EurekaMag PDF full texts Chapter 75,157
References:
Van Zytveld, J.B. 1984: Electrical resistivity of liquid chromium - Résistivité électrique du chrome liquide. Journal of Non-Crystalline Solids 61-62: 1085-1090
Saadeddine, S.; Gasser, J.G. 1994: Electrical resistivity of liquid copper-silver alloys. Philosophical Magazine. B. Physics of Condensed Matter. Structural, Electronic, Optical and Magnetic Properties 69(6): 1075-1082
Ivanov, M.I.; Berezutski, V.V. 2004: Electrical resistivity of liquid Cu-Ce alloys. Journal of Alloys and Compounds 375: 58-61
Berezutski, V.V.; Ivanov, M.I. 1999: Electrical resistivity of liquid Cu-Eu and Cu-Gd alloys. Journal of Alloys and Compounds 282(1-2): 1-4
Cil, K.; Dirisaglik, F.; Silva, H.; Adnane, L.; Wennberg, M.; King, A.; Faraclas, A.; Akbulut, M.B.; Yu, Z.H.U.; Lam, C.; Gokirmak, A. 2013: Electrical Resistivity of Liquid Ge2Sb2Te5 Based on Thin-Film and Nanoscale Device Measurements. Ieee Trans. Electron Devices 60(1): 433-437
El Bakkali, M.; Gasser, J.G.; Terzieff, P. 1993: Electrical resistivity of liquid gold - antimony alloys. Zeitschrift für Metallkunde 84(9): 622-626
Gasser, J.G.; Kefif, B. 1990: Electrical resistivity of liquid nickel-lanthanum and nickel-cerium alloys - Conductivité électrique des alliages liquides nickel-lanthane et nickel-cérium. Physical Review. B, Condensed Matter 41(5): 2776-2783
Rahman, S.M.M. 1984: Electrical resistivity of liquid noble metal alloys. Roles of pseudopotential refinements - Résistivité électrique des alliages de métaux nobles liquides. Rôles des raffinements du pseudopotentiel. Philosophical Magazine. B. Physics of Condensed Matter. Electronic, Optical and Magnetic Properties 49(5): 503-510
Onderka, B.; Fitzner, K. 1998: Electrical resistivity of liquid Sb-Te solutions. Physics and Chemistry of Liquids Print 36(4): 215-228
Zu, F.Q.; Shen, R.R.; Yun, X.I.; Li, X.F.; Ding, G.H.; Liu, H.M. 2006: Electrical resistivity of liquid Sn-Sb alloy. Journal of Physics. Condensed Matter 18(10): 2817-2823
Chang, S.Y.; Chen, C.F.; Lin, S.J.; Kattamis, T.Z. 2003: Electrical resistivity of metal matrix composites. Acta Materialia 51(20): 6291-6302
Montes, J.M.; Cuevas, F.G.; Cintas, J. 2007: Electrical Resistivity of Metal Powder Aggregates. Metallurgical and Materials Transactions. B, Process Metallurgy and Materials Processing Science 38(6): 957-964
Leung, K.M. 1984: Electrical resistivity of metallic thin films with rough surfaces - Résistivité électrique de couches minces métalliques avec surfaces rugueuses. Physical Review. B, Condensed Matter 30(2): 647-658
Chaudhuri, S.P.; Bandyopadhyay, S.; Mitra, N. 1995: Electrical resistivity of mullite obtained by sintering Al2O3-SiO2 mixtures. Interceram 44(5): 300-306
Wang, Y.Z.; Qiao, G.W.; Liu, X.D.; Ding, B.Z.; Hu, Z.Q. 1993: Electrical resistivity of nanocrystalline Fe-Cu-Si-B alloys obtained by crystallization of the amorphous alloy. Materials Letters (General Ed.) 17(3-4): 152-154
Pekaa, K.; Pekaa, M.; Skorvanek, I. 2004: Electrical resistivity of nanocrystalline Fe73.5Nb4.5Cr5Cu1B16 alloys. Journal of Non-Crystalline Solids 347(1-3): 27-30
Pekaa, K.; Jaskiewicz, P.; Nowinski, J.L.; Pekaa, M. 2003: Electrical resistivity of nanocrystals in Fe-Al-Ga-P-B-Si-Cu alloy. J. Magn. Magn. Mater 262(1): 146-149
Thakur, A.; Ahluwalia, P.K. 2006: Electrical resistivity of NaSn compound forming liquid alloy using ab initio pseudopotentials. Physica. B, Condensed Matter 373(1): 163-168
Takei, H. 1984: Electrical resistivity of Nb-Ti superconductors - Résistivité électrique des supraconducteurs Nb-Ti. Transactions of the Japan Institute of Metals 25(7): 511-515
Butenko, A.V.; Bolshutkin, D.N.; Pecherskaya, V.I. 1990: Electrical resistivity of Ni-Cr-Fe alloys : role of quantum interference effects and of the magnetic state. Soviet Physics, Jetp 71(5): 983-988
Rhazi, A.; Auchet, J.; Gasser, J.G. 1997: Electrical resistivity of Ni-In liquid alloys. Journal of Physics. Condensed Matter 9(46): 10115-10120
Ikeda, K.; Araki, Y.; Tanosaki, K. 1984: Electrical resistivity of Ni-rich Ni-Mn alloys - Résistivité électrique d'alliages Ni-Mn riches en Ni. Journal of the Physical Society of Japan 53(10): 3545-3552
Ikeda, K. 1988: Electrical resistivity of nickel, cobalt and their alloys - Résistivité électrique du nickel, du cobalt et de leurs alliages. Transactions of the Japan Institute of Metals 29(3): 183-190
Matsumoto, H. 2004: Electrical resistivity of NiTi with high transformation temperature. Journal of Alloys and Compounds 370: 244-248
Atkarskaya, A.B.; Borulko, V.I.; Goikhman, V.Y.U.; Zhmykhov, G.V.; Dudnik, T.A.; Maricheva, L.I.; Popovich, S.A. 1992: Electrical resistivity of oxide film coatings on glass. Glass and Ceramics 49(5-6): 229-231
Liu, S.H.; Poirier, D.R.; Ocansey, P.N. 1995: Electrical resistivity of Pb and Pb-10 Wt Pct Sn during solidification. Metallurgical and Materials Transactions. A, Physical Metallurgy and Materials Science 26(3): 741-745
Sharp, J.A. 1987: Electrical resistivity of pitch during heat treatment. Fuel (Guildf.) 66(11): 1487-1490
Dong Hyun, P.A.R.K.; Kwan Han, Y.O.O.N.; Park, Y.B.; Young Sil, L.E.E.; Young Jun, L.E.E.; Sang Wan, K.I.M. 2009: Electrical Resistivity of Polycarbonate/Multiwalled Carbon Nanotube Composites Under Varying Injection Molding Conditions. Journal of Applied Polymer Science 113(1): 450-455
Patel, S.M.; Patel, A.D. 1983: Electrical resistivity of polycrystalline AgInSe2 thin films. Materials Letters (General Ed.) 2(2): 127-130
Svorcik, V.; Rybka, V.; Hnatowicz, V.; Kvitek, J. 1994: Electrical resistivity of polymers modified by ion irradiation. Materials Letters (General Ed.) 19(5-6): 329-332
Chaudhuri, S.P.; Sarkar, P.; Chakraborty, A.K. 1999: Electrical resistivity of porcelain in relation to constitution. Ceramics International 25(1): 91-99
Reuvekamp, E.M.C.M.; Boguslavskij Yu, M.; Gerritsma, G.J.; Verhoeven, M.A.J.; Zandbergen, H.W.; Rogalla, H. 1993: Electrical resistivity of PrBai2Cu3-xGaxO7-y (001) and (105) oriented thin films. J. Alloys Compd 195: 643-646
Webster, E.F. 1985: Electrical resistivity of PVC solid woven conveyor belting. Kautschuk und Gummi, Kunststoffe 38(1): 39-41
Greedan, J.E.; Sato, M.; Naushad, A.L.I.; Datars, W.R. 1987: Electrical resistivity of pyrochlore compounds R2Mo2O7 (R=Nd, Sm, Gd, Tb, Y). Journal of Solid State Chemistry 68(2): 300-306
Kourov, N.I.; Tsiovkin Yu, N. 1993: Electrical resistivity of quasibinary solid solutions GdCu-GdZn. Physics of Metals and Metallography 75(6): 615-619
Yamauchi, T.; Takayanagi, K.; Yamaguchi, H. 1985: Electrical resistivity of quenched β-brass. I: Temperature dependence - Résistivité électrique du laiton-β trempé. I. Variation avec la température. Journal of the Physical Society of Japan 54(12): 4621-4625
Vlasov, A.N.; Shikerova, O.O. 1990: Electrical resistivity of rare-earth cobaltites Ln1-xSrxCoO3-δ(Ln=La, Nd, Gd). Soviet Physics. Solid State 32(9): 1502-1505
Du Plessis P De, V.; Booysen, R.G. 1988: Electrical resistivity of rare earth indium compounds - Résistivité électrique de composés terre-rare indium. International Conference on Magnetism (1988) 49(8): 391-392
Stankiewicz, J.; Bartolome, J.; Plugaru, N. 2004: Electrical resistivity of RFe11.5Ta0.5 and RFe11.3W0.7 alloys. Journal of Physics. Condensed Matter 16(36): 6485-6492
Amako, Y.; Nagai, H.; Adachi, K. 1993: Electrical resistivity of RMn12 compounds. Journal of the Physical Society of Japan 62(9): 3355-3356
Duijn, H.G.M.; Bruck, E.; Buschow, K.H.J.; De Boer, F.R. 1999: Electrical resistivity of RMn6Ge6 (R = rare earth) compounds. J. Magn. Magn. Mater 196-97: 691-693
Kezuka, H.; Egerton, R.; Masui, M.; Wada, T.; Ikehata, T.; Mase, H.; Takeuchi, M. 1993: Electrical resistivity of RuOx thin films prepared by ion beam sputter deposition. Appl. Surf. Sci 65-66: 293-297
Desai, P.D.; Chu, T.K.; James, H.M.; Ho, C.Y. 1984: Electrical resistivity of selected elements - Résistivité électrique d'éléments sélectionnés. Journal of Physical and Chemical Reference Data 13(4): 1069-1096
Hashiguchi, H.; Kinugasa, H. 1994: Electrical resistivity of α-SiC ceramics added with NiO. Nippon Seramikkusu Kyokai Gakujutsu Ronbunshi 102(2): 160-164
Dong Wook, S.H.I.N.; Tomozawa, M. 1993: Electrical resistivity of silica glasses. Journal of Non-Crystalline Solids 163(2): 203-210
Scholz, G.A.; Frindt, R.F. 1983: Electrical resistivity of silver intercalated 2H-TaS2. Physica Status Solidi. A. Applied Research 79(2): 483-488
Krasny, Y.P.; Krawczyk, J.; Kaptur, M.; Gurskii, Z. 2003: Electrical resistivity of simple metal amorphous alloys at moderately low temperatures. Physica. B, Condensed Matter 328(3-4): 179-192
Nagata, Y.; Suzuki, N.; Uchida, T.; Mosley, W.D.; Klavins, P.; Shelton, R.N. 1992: Electrical resistivity of single crystal Ba1-xKxBiO3. Physica. C. Superconductivity 195(1-2): 195-198
Takeuchi, S.; Akiyama, H.; Naito, N.; Shibuya, T.; Hashimoto, T.; Edagawa, K.; Kimura, K. 1993: Electrical resistivity of single-grained quasicrystals. J. Non-Cryst. Solids 153-54: 353-356
Zinkle, S.J. 1988: Electrical resistivity of small dislocation loops in irradiated copper - Résistivité électrique de petites boucles de dislocations dans le cuivre irradié. Journal of Physics. F. Metal Physics 18(3): 377-391
Jenkins, T.A.; Arajs, S. 1983: Electrical resistivity of some directionally-solidified aluminum-based eutectic alloys - Résistance électrique de quelques alliages eutectiques à solidification dirigée à base d'aluminium - Elektrischer Widerstand einiger gerichtet erstarrter eutektischer Legierungen auf Aluminiumbasis. Physica Status Solidi. A. Applied Research 75(1): 73-82
Zastre, E.; Roshko, R.M.; Williams, G. 1985: Electrical resistivity of some (PdNi)Mn alloys - Résistivité électrique de quelques alliages (PdNi)Mn. Journal of Physics. F. Metal Physics 15(1): 141-153
Merlo, F.; Canepa, F. 1987: Electrical resistivity of some RAg equiatomic compounds (R=La, Ce, Y) - Résistivité électrique de quelques composés équiatomiques RAg (R=La, Ce, Y). Journal of Physics. F. Metal Physics 17(12): 2373-2376
Motiu, A. 1981: Electrical resistivity of some romanian meteorites - Résistivité électrique de quelques météorites roumaines. Revue Roumaine de Geologie, Geophysique et Geographie. Geophysique 25: 83-88
Hassan, G.A.; Hashad, A.M. 1991: Electrical resistivity of stretched and twisted 99.70% pure silver. Czechoslovak Journal of Physics 41(6): 583-587
Xiaoping, S.H.U.I.; Chung, D.D.L. 2001: Electrical resistivity of submicron-diameter carbon-filament compacts. Carbon (New York) 39(11): 1717-1722
Ho, C.Y.; Ackerman, M.W.; Wu, K.Y.; Havill, T.N.; Bogaard, R.H.; Matula, R.A.; Oh, S.G.; James, H.M. 1983: Electrical resistivity of ten selected binary alloy systems - Résistivité électrique de dix systèmes d'alliages binaires sélectionnés. Journal of Physical and Chemical Reference Data 12(2): 183-322
Wencka, M.; Jazbec, S.; Jaglicic, Z.; Vrtnik, S.; Feuerbacher, M.; Heggen, M.; Roitsch, S.; Dolinsek, J. 2011: Electrical resistivity of the μ-Al4Mn giant-unit-cell complex metallic alloy. Philos. Mag. (2003, Print) 91(19-21): 2756-2764
Koshikawa, N.; Yoda, S.; Edagawa, K.; Minoda, K.; Tamura, R.; Takeuchi, S. 2004: Electrical resistivity of the Al65Rh27Si8 2/1 cubic approximant. J. Non-Cryst. Solids 334-35: 372-375
Macko, D.; Hudak, O.; Hajko, V. 1989: Electrical resistivity of the decagonal Al79Mn21 alloy - Résistivité électrique de l'alliage Al79Mn2, décagonal. Physics Letters. a 136(6): 327-331
Chekowska, G. 1994: Electrical resistivity of the Gd(Al1-xMx)2 compounds for M≡In, Ga, Pd, Sn, Si and Ge. Journal of Alloys and Compounds 209: 337-340
Kadowaki, K.; Franse, J.J.M.; Woods, S.B. 1987: Electrical resistivity of the heavy-fermion compounds (U, Th)Pt3 - Résistivité électrique des composés à fermions lourds (U, Th) Pt3. International Symposium on Magnetism of Intermetallic Compounds (Ismic) (1987) 70(1-3): 403-404
Bouziane, K.; De V du Plessis, P. 1999: Electrical resistivity of the Kondo system Ce1-xLaxPt2Si2. Journal of Physics. Condensed Matter 11(15): 3161-3167
Tchoula Tchokonte, M.B.; De V du Plessis, P.; Strydom, A.M. 2001: Electrical resistivity of the Kondo systems (Ce1-xLax)TSi3 (T = Rh, Ir). Solid State Communications 117(5): 321-325
Varshney, D.; Bhatnagar, S.; Singh, N. 2013: Electrical Resistivity of the Mg(B1―xCx)2 Superconductors: Role of Electron―Electron, and Electron―Phonon Interactions. Journal of Superconductivity and Novel Magnetism 26(8): 2743-2759
Tomlinson, W.J.; Rushton, R. 1985: Electrical resistivity of the MgCd3 order/disorder transformation - Résistivité électrique à la transformation ordre/désordre dans MgCd3. Materials Chemistry and Physics 12(4): 403-405
Ando, N.; Takeuchi, M. 1998: Electrical resistivity of the polymer layers with polymer grafted carbon blacks. Thin Solid Films 334(1-2): 182-186
Takeuchi, A.Y.; Da Cunha, S.F. 1982: Electrical resistivity of the pseudo-binary compound Ce(Fe0.8Al0.2)2 - Résistivité électrique du composé pseudo-binaire CeFe(Fe0,8Al0,2)2. Journal of Magnetism and Magnetic Materials 30(1): 135-137
Takeuchi, A.Y.; Da Cunha, S.F. 1985: Electrical resistivity of the pseudo-binary system Ce(Fe1-xAlx)2 - Résistivité électrique du système pseudo-binaire Ce(Fe1-xAlx)2. Journal of Magnetism and Magnetic Materials 49(3): 257-264
Merlo, F.; Pani, M.; Fornasini, M.L. 1995: Electrical resistivity of the RMBi phases with R=Ca, Yb and M=Cu, Ag, Au. Journal of Alloys and Compounds 221(1-2): 280-283
Dheepa, J.; Sathyamoorthy, R.; Velumani, S.; Subbarayan, A.; Natarajan, K.; Sebastian, P.J. 2004: Electrical resistivity of thermally evaporated bismuth telluride thin films. International Symposium on Solar-Hydrogen-Fuel cells (Cancun 2002) 81(3): 305-312
Glickman, E.E.; Bogush, V.; Inberg, A.; Shachamdiamand, Y.; Croitoru, N. 2003: Electrical resistivity of thin electroless Ag-W films for metallization. Microelectron. Eng 70(2-4): 495-500
Tabatabaie, N.; Sands, T.; Harbison, J.P.; Gilchrist, H.L.; Florez, L.T.; Keramidas, V.G. 1989: Electrical resistivity of thin epitaxial NiAl buried in (Al,Ga)As. Applied Physics Letters 54(21): 2112-2114
Yoshioka, A.; Edagawa, K.; Takeuchi, S.; Kimura, K. 1997: Electrical resistivity of thin film samples of Al-Cu-Fe icosahedral quasicrystal. Physica Status Solidi. B. Basic Research 201(1): 97-104
Movshovitz, D.; Wiser, N. 1990: Electrical resistivity of thin wires at low temperatures : potassium. Journal of Physics. Condensed Matter 2(40): 8053-8062
Movshovitz, D.; Wiser, N. 1991: Electrical resistivity of thin wires at low temperatures : strained whiskers of copper. Journal of Physics. Condensed Matter 3(33): 6403-6413
Tzeng, S.J.; Lin, J.J.; Yao, Y.D.; Chen, Y.Y. 1992: Electrical resistivity of Ti0.862Al0.102V0.036 alloy between 4 and 1000 K. Journal of the Physical Society of Japan 61(2): 674-678
Wu, S.K.; Lin, H.C.; Lin, T.Y. 2006: Electrical resistivity of Ti-Ni binary and Ti-Ni-X (X = Fe, Cu) ternary shape memory alloys. Icomat-05 : International Conference on Martensitic Transformations 438-440: 536-539
Hazra, S.K.; Borgese, L.; Depero, L.E.; Federici, S.; Bontempi, E.; Ferrari, M.; Ferrari, V.; Plaisier, J.R.; Santarelli, X.; Zerauschek, G.; Lausi, A. 2012: Electrical resistivity of Ti―Zn mixed oxide thin films deposited by atomic layer deposition. Thin Solid Films 520(16): 5151-5154
Matiur, R.A.H.M.A.N.; Wang, C.C.; Weihua, C.H.E.N.; Akbar, S.A.; Mroz, C. 1995: Electrical resistivity of titanium diboride and zirconium diboride. Journal of the American Ceramic Society 78(5): 1380-1382
Lal, K.; Meikap, A.K.; Chattopadhyay, S.K.; Chatterjee, S.K.; Ghosh, M.; Baba, K.; Hatada, R. 2001: Electrical resistivity of titanium nitride thin films prepared by ion beam-assisted deposition. Physica. B, Condensed Matter 307(1-4): 150-157
Chaudhuri, S.P.; Patra, S.K.; Chakraborty, A.K. 1999: Electrical resistivity of transition metal ion doped mullite. Journal of the European Ceramic Society 19(16): 2941-2950
Ranganathan, R.; Thummes, G. 1987: Electrical resistivity of transition metal substituted Y9Co7 compounds - Résistivité électrique des composés Y9Co7 substitués par un métal de transition. International Conference on low Temperature Physics 18 (1987) 26(3): 821-822
Kierul, J.; Ledzion, J. 1991: Electrical resistivity of ultra-thin films. Physica Status Solidi. A. Applied Research 128(1): 117-121
Kuo, T.C.; Wang, K.L. 1991: Electrical resistivity of ultrathin, epitaxial CoGa on GaAs. Applied Physics Letters 59(26): 3399-3401
Terashima, K.; Katsumata, T.; Orita, F.; Kikuta, T.; Fukuda, T. 1983: Electrical resistivity of undoped GaAs single crystals grown by magnetic field applied LEC technique. Jpn. J. Appl. Phys 22(6): 325-327
Nigrelli, E.; Bartholin, H.; Breandon, C.; Burlet, P.; Fournier, J.M.; Mattenberger, K.; Vogt, O. 1994: Electrical resistivity of UP1-xSx solid solutions with applied uniaxial stress or magnetic field. Physica. B, Condensed Matter 203(1-2): 99-106
Avrekh, M.; Monteiro, O.R.; Brown, I.G. 2000: Electrical resistivity of vacuum-arc-deposited platinum thin films. Applied Surface Science 158(3-4): 217-222
Desai, P.D.; James, H.M.; Ho, C.Y. 1984: Electrical resistivity of vanadium and zirconium - Résistivité électrique du vanadium et du zirconium. Journal of Physical and Chemical Reference Data 13(4): 1097-1130
Caballero, J.; Kremer, G.; Moraga, L.A. 1984: Electrical resistivity of very thin single-crystal titanium films as a function of temperature - Résistivité électrique de couches très minces monocristallines de titane en fonction de la température. Thin Solid Films 117(1): 1-8
Da Cunha, S.F.; Souza, G.P.; Takeuchi, A.Y. 1988: Electrical resistivity of Y(Fe1-xAlx)2 in the spin glass concentration range - Résistivité électrique de Y(Fe1-xAlx)2 dans le domaine de concentration du verre de spin. Journal of Magnetism and Magnetic Materials 73(3): 355-360
Friedemann, S.; Oeschler, N.; Krellner, C.; Geibel, C.; Steglich, F. 2009: Electrical resistivity of Yb(Rh1-xCox)Si2 single crystals at low temperatures. Physica, B Condens. Matter 404(19): 2890-2893
Alamiyadri, K.; Wilhelm, H.; Jaccard, D. 1998: Electrical resistivity of YbInAu2 and YbCuAl up to 8 GPa. Solid State Communications 108(5): 279-283
Sakai, Y.; Kaneda, K.; Tsuda, N.; Tanaka, M. 1986: Electrical resistivity of YFe2O4. Journal of the Physical Society of Japan 55(9): 3181-3187
Mangasmurillo, J.; Cuerdacorrea, E.M.; Dominguez, J.R.; Maciasgarcia, A.; Bernalte, E. 2013: Electrical resistivity of YSZ-coated stainless steel electrodes. A study by response surface methodology. Journal of Alloys and Compounds 577: 360-369
Kaneda, A.; Yamamoto, M.; Naito, S.; Mabuchi, M.; Hashino, T. 1998: Electrical resistivity of zirconium hydrides and deuterides at high temperatures. Journal of Physics. Condensed Matter 10(21): 4645-4657
Llanos, J.; Pena, O. 2005: Electrical resistivity, optical and magnetic properties of the layered oxyselenide SmCuOSe. Journal of Solid State Chemistry 178(4): 957-960
Shishido, T.; Kudou, K.; Okada, S.; Ye, J.; Oku, M.; Horiuchi, H.; Fukuda, T. 1998: Electrical resistivity, oxidation resistivity and hardness of single crystal compounds in the Er-Rh-B system. Journal of Alloys and Compounds 280(1-2): 65-70
Vipulanandan, C.; Garas, V. 2008: Electrical Resistivity, Pulse Velocity, and Compressive Properties of Carbon Fiber-Reinforced Cement Mortar. Journal of Materials in Civil Engineering 20(2): 93-101
Nakano, T.; Hedo, M.; Uwatoko, Y. 2005: Electrical resistivity, specific heat and magnetic susceptibility of tetragonal CeGe1.66. Physica, B Condens. Matter 359-61: 284-286
Boukhris, L.; Poitevin, J.M. 1997: Electrical resistivity, structure and composition of d.c. sputtered WNx films. Thin Solid Films 310(1-2): 222-227
Schwarz, G.; Mehl, H.G.; Ramdani, F.; Rath, V. 1992: Electrical resistivity structure of the eastern Moroccan Atlas System and its tectonic implications. Geol. Rundsch. (1910, Print) 81(1): 221-235
Ritz, M. 1984: Electrical resistivity structure of the Senegal basin as determined from magnetotelluric and differential geomagnetic soundings - Structure de résistivité électrique du Bassin du Sénégal déterminée à partir des sondages magnétotelluriques et géomagnétiques différentiels. Geophysical Journal of the Royal Astronomical Society 79(2): 635-649
Bhagat, A.N.; Ranganathan, S.; Mohanty, O.N. 2003: Electrical resistivity studies in low carbon and HSLA - 100 steels. Materials Science and Technology 19(3): 343-346
Radha, S.; Nigam, A.K.; Girish, C.H.A.N.D.R.A. 1993: Electrical-resistivity studies of AuFeCr. Physical Review. B, Condensed Matter 48(13): 9564-9568
Martynova, J.; Alberts, H.L.; Smit, P. 1996: Electrical resistivity studies of Cr-Ir alloy single crystals. Journal of Physics. Condensed Matter 8(49): 10473-10481
Stoch, P.; Pszczoa, J.; Guzdek, P.; Chmist, J.; Panta, A. 2005: Electrical resistivity studies of Dy(Fe1-xCox)2 compounds. Journal of Alloys and Compounds 394: 116-121
Bahadur, D.; Das, A.; Singh, K.; Majumdar, A.K. 1991: Electrical resistivity studies of quasicrystalline Ti56Ni28-xFexSi16 (0≤x≤15). Journal of Physics. Condensed Matter 3(23): 4125-4133
Haak, V. 1993: Electrical resistivity studies of the continents: tools to probe Europe. Publications of the Institute of Geophysics. a (20): 91-98
Boakye, F. 2003: Electrical resistivity studies of thermally evaporated manganese-rhenium thin films. Cryogenics (Guildford) 43(8): 459-462
Smit, P.; Alberts, H.L. 1993: Electrical resistivity studies on a Cr + 0.3 at.% Ru alloy single crystal. Journal of Physics. Condensed Matter 5(35): 6433-6436
Sivakumar, R.; Ramaprabhu, S.; Rama Rao, K.V.S. 2001: Electrical resistivity studies on ZrxTb1-xFe3 (x = 0.2, 0.3) hydrides. Journal of Physics. Condensed Matter 13(18): 4155-4164
Antonucci, V.; Faiella, G.; Giordano, M.; Mennella, F.; Nicolais, L. 2007: Electrical resistivity study and characterization during NiTi phase transformations. Thermochimica Acta 462(1-2): 64-69
Burzo, E.; Ardelean, I.; Doina, U.N.G.U.R. 1985: Electrical resistivity study of some lead-borate glasses. Solid State Communications 53(3): 283-285
Matsumoto, H. 2002: Electrical resistivity study on transformation of NiTi alloys. Nippon Kinzoku Gakkaishi (1952) 66(12): 1350-1355
Boyd, W.E. 1985: Electrical resistivity survey of some late quaternary sediments in upland Britain: an example from Shewalton Moss, Scotland - Levé de résistivité électrique de sédiments du Quaternaire récent dans les hautes terres britanniques: exemple de Shewalton Moss, Ecosse. Geologiska Foereningens i Stockholm Foerhandlingar 107(4): 257-264
Ako, B.D.; Osundu, V.C. 1986: Electrical resistivity survey of the Kerri-Kerri Formation, Darazo, Nigeria - Résistivité électrique de la formation de Kerri-Kerri, Darazo, Nigeria. Journal of African Earth Sciences (1983) 5(5): 527-534
Reiffers, M.; Idzikowski, B.; Sebek, J.; Santava, E.; Ilkovic, S.; Pristas, G. 2006: Electrical resistivity, susceptibility and heat capacity of cubic Kondo compound YbCu5 prepared by melt-spinning technique. Physica, B Condens. Matter 378-80: 738-739
Oguri, A.; Maekawa, S. 1990: Electrical resistivity, thermal conductivity, and thermopower in the U=∞ Hubbard model. Physical Review. B, Condensed Matter 41(10B): 6977-6988
Bauer, E.; Gratz, E.; Kirchmayr, H.; Pillmayr, N.; Nowotny, H. 1985: Electrical resistivity, thermal conductivity and thermopower of nonmagnetic REAl2 compounds - Résistivité électrique, conductivité thermique et pouvoir thermoélectrique des composés REAl2 non-magnétiques. Journal of the Less-Common Metals 111(1-2): 369-373
Rama, N.; Sankaranarayan, V.; Ramachandra Rao, M.S. 2008: Electrical resistivity, thermoelectric power and electron spin resonance studies on Pr(1-x)SrxMnΟ3 (x=0.2, 0.26 and 0.3). Journal of Alloys and Compounds 466(1-2): 12-16
Schmidbauer, E.; Schneider, J. 1997: Electrical resistivity, thermopower, and 57Fe Mössbauer study of FeNbO4. Journal of Solid State Chemistry 134(2): 253-264
Gianno, K.; Sologubenko, A.V.; Chernikov, M.A.; Ott, H.R.; Fisher, I.R.; Canfield, P.C. 2000: Electrical resistivity, thermopower, and thermal conductivity of single grained (Y, Tb, Ho, Er)-Mg-Zn icosahedral quasicrystals. Mater. Sci. Eng. A Struct. Mater. Prop. Microstruct. Proces 294-96: 715-718
Garde, C.S.; Ray, J.; Chandra, G. 1993: Electrical resistivity, thermopower and thermal conductivity studies of (Sm1-xYx)Cu2 and RCu2 (R≡Gd, Pr or Tb) systems. Journal of Physics. Condensed Matter 5(36): 6737-6744
Piegari, E.; Cataudella, V.; Di Maio, R.; Milano, L.; Nicodemi, M.; Soldovieri, M.G. 2009: Electrical resistivity tomography and statistical analysis in landslide modelling: A conceptual approach. Journal of Applied Geophysics 68(2): 151-158
Kneisel, C. 2003: Electrical resistivity tomography as a tool for geomorphological investigations - some case studies. Zeitschrift für Geomorphologie. Supplementband 132: 37-49
Tassy, A.; Maxwell, M.; Borgomano, J.; Arfib, B.; Fournier, F.; Gilli, E.; Guglielmi, Y. 2014: Electrical resistivity tomography (ERT) of a coastal carbonate aquifer (Port-Miou, SE France) : Besancon ― karst aquifers. Environmental Earth Sciences 71(2): 601-608
David, P.; Panagiotis, T.; Konstantinos, A. 2009: Electrical resistivity tomography mapping of beachrocks: application to the island of Thassos (N. Greece). Environmental Earth Sciences 59(1): 233-240
Kaburagi, Y.; Bragg, R.H.; Hishiyama, Y. 1991: Electrical resistivity, transverse magnetoresistance and Hall coefficient in pyrolytic carbon : correlation with interlayer spacing d002. Philosophical Magazine. B. Physics of Condensed Matter. Structural, Electronic, Optical and Magnetic Properties 63(2): 417-436
Collave, J.R.; Borges, H.A.; Ramos, S.M.; Hering, E.N.; Fontes, M.B.; Baggiosaitovitch, E.; Eichler, A.; Bittar, E.M.; Pagliuso, P.G. 2014: Electrical resistivity under extreme conditions in the Ce3Ir4Sn13 heavy fermion compound. Solid State Communications 177: 132-135
Stipcich, M.; Cuniberti, A.; Noseda Grau, V. 2012: Electrical resistometry study of an AlMgSi alloy under artificial aging. Journal of Alloys and Compounds 542: 248-252
Okubo, A.; Miyayama, M.; Yanagida, H. 1995: Electrical resitivity control in carbon fibers by high-voltage pulse application. Nippon Seramikkusu Kyokai Gakujutsu Ronbunshi 103(1): 88-92
Karantonis, A.; Karaoulanis, D. 2012: Electrical resonance and antiresonance of the electrochemical interface under potentiostatic control: Theoretical considerations. Electrochimica Acta 78: 244-250
Kaewpirom, S.; Boonsang, S. 2006: Electrical response characterisation of poly(ethylene glycol) macromer (PEGM)/chitosan hydrogels in NaCl solution. European Polymer Journal 42(7): 1609-1616
Seon Jeong, K.I.M.; Su Ryon, S.H.I.N.; Jang Han, L.E.E.; Sang Hoon, L.E.E.; Kim, S.I. 2003: Electrical response characterization of chitosan/polyacrylonitrile hydrogel in NaCl solutions. Journal of Applied Polymer Science 90(1): 91-96
Blairstahn, N.D.; Wilson, D.B. 2009: Electrical Response Matrix of a Regular 2n-Gon. Proceedings of the American Mathematical Society 137(6): 2015-2025
Tanabe, K.; Enomoto, Y.; Yamaji, A. 1990: Electrical response of Ba1-xKxBiO3 polycrystalline thin films to infrared radiation. Applied Physics Letters 57(25): 2719-2721
Mashimo, T.; Toda, K.; Nagayama, K.; Goto, T.; Syono, Y. 1986: Electrical response of BaTiO3 ceramics to the shock-induced ferroelectric-paraelectric transition. Journal of Applied Physics 59(3): 748-756
Terny, C.S.; Cardillo, E.C.; Dipratula, P.E.; Villar, M.A.; Frechero, M.A. 2014: Electrical response of bivalent modifier cations into a vanadium-tellurite glassy matrix. Journal of Non-Crystalline Solids 387: 107-111
Heeder, N.J.; Shukla, A.; Chalivendra, V.; Yang, S.; Park, K. 2012: Electrical Response of Carbon Nanotube Reinforced Nanocomposites Under Static and Dynamic Loading. Experimental Mechanics 52(3): 315-322
Miranda, F.A.; Mueller, C.H.; Koepf, G.A.; Yandrofski, R.M. 1995: Electrical response of ferroelectric/superconducting/dielectric BaxSr1-xTiO3/YBa2Cu3O7-δ/LaAIO3 thin-film multilayer structures. Superconductor Science and Technology 8(10): 755-763
Mahapatra, S.P.; Tripathy, D.K.; Lee, Y. 2012: Electrical response of microcellular EPDM rubber composites: complex dielectric modulus formalism and current―voltage characteristics. Polymer Bulletin (Berlin. Print) 68(7): 1965-1976
Smith, D.S.; Lavielle, D.; Orange, G. 1994: Electrical response of microcracks in alumina/zirconia ceramic composites. Silic. Ind 61(5-6): 165-168
Kummel, S.; Kronik, L.; Perdew, J.P. 2004: Electrical response of molecular chains from density functional theory. Physical Review Letters 93(21): 213002.1-213002.4
Campos, M. 2011: Electrical Response of Polypyrrole Films Doped with Dodecylbenzene Sulfonic Acid to Acetone Vapor. Journal of Applied Polymer Science 121(5): 2518-2525
Sencadas, V.; Moreira, V.; Mano, J.F.; Lancerosmendez, S. 2004: Electrical response of β-PVDF in a constant uniaxial strain rate deformation. Emf-10: European Meeting on Ferroelectrics 304: 873-876
Lysne, P.C. 1983: Electrical response of relaxing dielectrics compressed by arbitrary stress pulses. Journal of Applied Physics 54(6): 3154-3159
Brocklesby, W.S.; Monroe, D.; Levi, A.F.J.; Hong, M.; Liou, S.H.; Kwo, J.; Mankiewich, P.M.; Howard, R.E. 1989: Electrical response of superconducting YBa2Cu3O7-δ to light. Applied Physics Letters 54(12): 1175-1177
Moore, J.C.; Wolff, E.W.; Clausen, H.B.; Hammer, C.U.; Legrand, M.R.; Fuhrer, K. 1994: Electrical response of the Summit-Greenland ice core to ammonium, sulphic acid, and hydrochloric acid. Geophysical Research Letters 21(7): 565-568
Furumi, S.; Yokoyama, S.; Otomo, A.; Mashiko, S. 2003: Electrical response of the supramolecular helical structure and laser action in chiral photonic bandgap liquid crystals. Kobunshi Ronbunshu (Tokyo) 60(10): 555-560
Jun Rong, L.I.; Jia Rui, X.U.; Ming Qiu, Z.H.A.N.G.; Min Zhi, R.O.N.G. 2003: Electrical response to organic vapor of conductive composites from amorphous polymer/carbon black prepared by polymerization filling. Macromolecular Materials and Engineering 288(2): 103-107
Gleskova, H.; Wagner, S. 2008: Electrical response to uniaxial tensile strain of a-Si:H TFTs fabricated on polyimide foils. J. Non-Cryst. Solids 354(19-25): 2627-2631
Sandeman, D.C.; Sandeman, R.E. 1994: Electrical responses and synaptic connections of giant serotonin-immunoreactive neurons in crayfish olfactory and accessory lobes. Journal of Comparative Neurology (1911) 341(1): 130-144
Bing, C.H.E.N.; Juanyu, L.I.U.; Keru, W.U. 2005: Electrical responses of carbon fiber reinforced cementitious composites to monotonic and cyclic loading. Cement and Concrete Research 35(11): 2183-2191
Terakado, N.; Tanaka, K. 2011: Electrical responses of chalcogenide films in the photodoping process. Thin Solid Films 519(11): 3773-3777
Tanabe, K.; Enomoto, Y.; Asano, H.; Kubo, S.; Suzuki, M.; Yamaji, A. 1991: Electrical responses of high-Tc superconducting thin films to infrared readiation. Phys., C Supercond 185/89: 2601-2602
Semm, P.; Vollrath, L. 1984: Electrical responses of homing pigeon and guinea pig Purkinje cells to pineal indoleamines applied by microelectrophoresis. Journal of Comparative Physiology. A, Sensory, Neural, and Behavioral Physiology 154(5): 675-681
Tanabe, K.; Enomoto, Y.; Asano, H.; Kubo, S. 1993: Electrical responses of Ln-Ba-Cu-O (Ln=Eu, Y), Ba-K-Bi-O and Ba-Pb-Bi-O superconducting thin films to pulsed infrared radiation. Jpn. J. Appl. Phys 32(4): 1626-1633
Hanah, N.A.; Hyejin, C.H.O.; Kyoseung, S.I.M.; Hyunseok, S.H.I.M.; Kim, S.J.; Seungmoon, P.Y.O. 2014: Electrical responses of short-channel organic transistor prepared by solution-processed organic crystal wire mask. Organic Electronics 15(11): 2728-2733
Innocenzi, P.; Falcaro, P.; Mio Bertolo, J.; Bearzotti, A.; Amenitsch, H. 2005: Electrical responses of silica mesostructured films to changes in environmental humidity and processing conditions. Journal of Non-Crystalline Solids 351(24-26): 1980-1986
Wang, Y.I.N.T.I.N.G.; Meissl, H.; Dodt, E. 1989: Electrical responses of the ganglion cell in frog's pineal body to indoleamines. Tung Wu Hsueh Pao 35(2): 153-157
Tyurin, M.V.; Voroshilova, E.B.; Rostova, Y.G.; Oparina, N.Y.; Gusyatiner, M.M. 1998: Electrical responses of the internal membrane structures of corynebacteria during electrotransformation. Microbiology (New York) 67(3): 279-285
Zanello, L.P.; Norman, A.W. 2004: Electrical responses to 1α, 25(OH)2-Vitamin D3 and their physiological significance in osteoblasts. International Meeting on Rapid Responses to Steroid Hormones 69(8-9): 561-565
Ramoa, S.D.A.S.; Barra, G.M.O.; Oliveira, R.V.B.; De Oliveira, M.G.; Cossa, M.; Soares, B.G. 2013: Electrical, rheological and electromagnetic interference shielding properties of thermoplastic polyurethane/carbon nanotube composites. Polymer International 62(10): 1477-1484
Bin, L.I.N.; Gelves, G.A.; Haber, J.A.; Sundararaj, U. 2007: Electrical, rheological, and mechanical properties of polystyrene/copper nanowire nanocomposites. Industrial and Engineering Chemistry Research 46(8): 2481-2487
Bose, S.; Bhattacharyya, A.R.; Kulkarni, A.R.; Potschke, P. 2009: Electrical, rheological and morphological studies in co-continuous blends of polyamide 6 and acrylonitrile-butadiene-styrene with multiwall carbon nanotubes prepared by melt blending. Composites Science and Technology 69(3-4): 365-372
Cayla, A.; Campagne, C.; Rochery, M.; Devaux, E. 2011: Electrical, rheological properties and morphologies of biphasic blends filled with carbon nanotubes in one of the two phases. Synthetic Metals 161(11-12): 1034-1042
Grantham, C. 1985: Electrical safety in hazardous environments. Electrical Power and Energy Systems 7(4): 194-200
Smith, R.P.; Krempetz, K.; Stefanik, A.M.; Wands, R.; Yamada, R.; Kristalinski, A.; Lee, A.; Markley, D.; Orr, S.; Rucinski, R.; Schmitt, R.L.; Squires, B.; Stanek, R.P. 1996: Electrical safety of a thin superconducting solenoid in an iron yoke. Adv. Cryog. Eng 41: 1889-1895
Parise, G.; Martirano, L.; Mitolo, M. 2011: Electrical Safety of Street Light Systems. IEEE Transactions on Power Delivery 26(3): 1952-1959
Deng, H.; Hackam, R. 1996: Electrical salt-fog performance of XLPE insulation with different levels of CaCO3. IEEE Transactions on Dielectrics and Electrical Insulation 3(6): 817-826
Persson, T.; Nordlander, S.; Ronnelid, M. 2005: Electrical savings by use of wood pellet stoves and solar heating systems in electrically heated single-family houses. Energy and Buildings 37(9): 920-929
Johnson, J.E. 1988: Electrical savings in oil production. Spe California Regional Meeting 1 (1987) 3(4): 625-628
Kuntze, S.B.; Ban, D.; Sargent, E.H.; Dixonwarren, S.J.; White, J.K.; Hinzer, K. 2005: Electrical scanning probe microscopy : Investigating the inner workings of electronic and optoelectronic devices. Critical Reviews in Solid State and Materials Sciences 30(2): 71-124
Hoske, M.T. 1999: Electrical schematic software automates wiring, panel design. Control Engineering 46(8): 47-50
Fryer, S.M.; Forde, K. 1990: Electrical screening of powdered dairy products. Society for Applied Bacteriology Technical Series 25: 143-153
Kukuruznyak, D.A.; Ahmet, P.; Chikyow, T.; Yamamoto, A.; Ohuchi, F.S. 2006: Electrical screening of ternary NiO-Mn2O3-Co3O4 composition spreads. Applied Surface Science 252(10): 3828-3832
Feinsteinjaffe, I.; Efraty, A. 1986: Electrical semiconductivity of stacked layer coordination polymers of rhodium(I). Macromolecules 19(7): 2076-2077
Maier, J. 1993: Electrical sensing of complex gaseous species by making use of acid-base properties. Solid State Ionics 62(1-2): 105-111
Archer, M.; Fauchet, P.M. 2003: Electrical sensing of DNA hybridization in porous silicon layers. Physica Status Solidi. A. Applied Research 198(2): 503-507
Lunt, B.M.; Merrell, R.S.; Strong, A.B.; Cox, M.R. 1997: Electrical sensing of shelf-cure properties of polymeric prepreg materials. Journal of Applied Polymer Science 64(2): 337-342
Wang, C.T.; Wu, C.L. 2006: Electrical sensing properties of silica aerogel thin films to humidity. Thin Solid Films 496(2): 658-664
Seon Jeong, K.I.M.; Seoung Gil, Y.O.O.N.; Sang Min, L.E.E.; Sang Hoon, L.E.E.; Kim, S.I. 2004: Electrical sensitivity behavior of a hydrogel composed of polymethacrylic acid/poly(vinyl alcohol). Journal of Applied Polymer Science 91(6): 3613-3617
Erickson, C.J.; Haideri, A.Q. 1985: Electrical service and controls for joule heating of a nuclear waste experimental glass melter. Ieee Trans. Ind. Appl 21(4): 1070-1074
Mcallister, V.L. 1983: Electrical services for mechanical systems: mechanical and electrical engineers are challenged to coordinate systems for a universitýs mechanical engineering building - Installations électriques et mécaniques: rôle des ingénieurs mécaniciens et électriciens pour coordonner les installations dans un bâtiment universitaire. Heating, Piping and Air Conditioning 55(12): 60-66
Bencetie, B. 2005: Electrical shock hazard during oil pipeline works - Opasnost od električnog udara pri radovima na naftovodu. Nafta (Zagreb) 56(7): 273-286
Zondervan, A.; Verhoef, L.; Lindholm, F.A.; Neugroschel, A. 1988: Electrical short-circuit current decay: practical utility and variations of the method. Journal of Applied Physics 63(11): 5563-5570
Han, S.; Osterman, M.; Pecht, M.G. 2010: Electrical Shorting Propensity of Tin Whiskers : Tin whiskers. IEEE Transactions on Electronics Packaging Manufacturing 33(3): 205-211
Kim, S.; Park, S.J. 2008: Electrical signal effect on electrochemical activities of metal catalysts electrically deposited on carbon nanotubes. Electrochimica Acta 53(12): 4082-4088
Winters, J.H.; Gitlin, R.D. 1990: Electrical signal processing techniques in long-haul fiber-optic systems. IEEE Transactions on Communications 38(9): 1439-1453
Shabala, S.; Jiayin, P.A.N.G.; Meixue, Z.H.O.U.; Shabala, L.; Cuin, T.A.; Nick, P.; Wegner, L.H. 2009: Electrical signalling and cytokinins mediate effects of light and root cutting on ion uptake in intact plants. Plant, cell and Environment 32(2): 194-207
Wildon, D.C.; Thain, J.F.; Minchin, P.E.H.; Gubb, I.R.; Reilly, A.J.; Skipper, Y.D.; Doherty, H.M.; Odonnell, P.J.; Bowles, D.J. 1992: Electrical signalling and systemic proteinase inhibitor induction in the wounded plant. Nature (London) 360(6399): 62-65
Min, Z.H.A.O.; Bing, S.O.N.G.; Sasaki, T.; Suzuki, A.; Forrester, J.V.; Bourne, H.R.; Devreotes, P.N.; Mccaig, C.D.; Penninger, J.M.; Jin, P.U.; Wada, T.; Reid, B.; Guangping, T.A.I.; Fei, W.A.N.G.; Aihua, G.U.O.; Walczysko, P.; Yu, G.U. 2006: Electrical signals control wound healing through phosphatidylinositol-3-OH kinase-γ and PTEN. Nature (London) 442(7101): 457-460
Giri, P.K. 2003: Electrical signature for configurational bistability of self-interstitial clusters in ion-damaged silicon. Physica, B Condens. Matter 340-42: 729-733
Zhang, W.D.; Zhang, J.F.; Zhao, C.Z.; Chang, M.H.; Groeseneken, G.; Degraeve, R. 2006: Electrical signature of the defect associated with gate oxide breakdown. IEEE Electron Device Letters 27(5): 393-395
Dhanunjaya Naidu, G.; Veeraswamy, K.; Harinarayana, T. 2011: Electrical signatures of the Earth's crust in central India as inferred from magnetotelluric study. Earth, Planets and Space 63(12): 1175-1182
Martins, J.; Fernandes, M.; Vieira, M. 2002: Electrical simulation of a p-i-n image sensor. Ivm-4 Iberian Vacuum Meeting 64(3-4): 307-313
Tarikov, G.P. 1992: Electrical simulation of contact stresses for an eccentrically loaded paraboloid of rotation entering an elastic half-space. Strength of Materials 24(1): 73-77
Son, M.S.; Yoo, K.H.; Jang, J. 2004: Electrical simulation of the flicker in poly-Si TFT-LCD pixels for the large-area and high-quality TFT-LCD development and manufacturing. Solid-State Electronics 48(12): 2307-2313
Sodha, M.S.; Sawhney, R.L.; Singh, S.P.; Jayashankar, B.C. 1990: Electrical simulation of thermal losses from underground structures. International Journal of Energy Research 14(2): 245-248
Bayard, J.; Grenet, J.; Cabot, C.; Jutigny, M.; Dargent, E. 1997: Electrical simulation of thermally stimulated depolarization current experiments. Journal of Thermal Analysis 50(3): 441-453
Ruiz, G.A. 1999: Electrical simulator for bridging and floating failures in MOS digital circuits. International Journal of Modelling and Simulation 19(1): 77-84
Stolecki, B.; Borodziukkulpa, A.; Wesolowska, C. 1984: Electrical size effect in polycrystalline indium films - Effet électrique dimensionnel dans les couches polycristallines d'indium. Thin Solid Films 116(4): 317-325
Jengrern, Y.A.N.G.; Juh Tzeng, L.U.E. 1988: Electrical size effects of thin C54-TiSi2 films grown on silicon substrates. Solid State Communications 65(12): 1613-1616
Liu, P.; Bahadur, S.; Berhoeven, J.D. 1994: Electrical sliding friction and wear behavior of Cu-Nb in situ composites. IEEE Transactions on Components, Packaging, and Manufacturing Technology. Part B, Advanced Packaging 17(4): 616-624
Shiyin, H.U.A.N.G.; Yi, F.E.N.G.; Hongjuan, L.I.U.; Kewang, D.I.N.G.; Gang, Q.I.A.N. 2013: Electrical sliding friction and wear properties of Cu―MoS2―graphite―WS2 nanotubes composites in air and vacuum conditions. Materials Science and Engineering. A, Structural Materials : Properties, Microstructure and Processing 560: 685-692
George, M.A.; Glaunsinger, W.S.; Thundat, T.; Lindsay, S.M. 1990: Electrical, spectroscopic, and morphological investigation of chromium diffusion through gold films. Thin Solid Films 189(1): 59-72
Rinaldi, A.W.; Matos, R.; Rubira, A.F.; Ferreira, O.P.; Girotto, E.M. 2005: Electrical, spectroscopic, and thermal properties of blends formed by PEDOT, PVC, and PEO. Journal of Applied Polymer Science 96(5): 1710-1715
Di Noto, V.; Vittadello, M.; Zago, V.; Pace, G.; Vidali, M. 2006: Electrical spectroscopy studies of two new siloxanic proton conducting membranes. International Symposium on Electrochemical Impedance Spectroscopy 51(8-9): 1602-1610
Sinsarp, A.; Manago, T.; Takano, F.; Akinaga, H. 2007: Electrical spin injection from an iron-rich iron-platinum thin film into gallium arsenide. Proc. Spie Int. Soc. Opt. Eng: 67930K.1-67930K.5
Ramsteiner, M. 2003: Electrical spin injection from ferromagnetic metals into GaAs. Journal of Superconductivity 16(4): 661-669
De Araujo, C.I.L.; Thmelero, M.A.; Avila, J.I.; Viegas, A.D.C.; Garcia, N.; Pasa, A.A. 2013: Electrical Spin Injection from Ferromagnetic Nanocontacts into Nondegenerated Silicon at Low Temperatures. Journal of Superconductivity and Novel Magnetism 26(12): 3449-3454
Loffler, W.; Trondle, D.; Kalt, H.; Litvinov, D.; Gerthsen, D.; Lupacaschomber, J.; Passow, T.; Daniel, B.; Kvietkova, J.; Hetterich, M. 2006: Electrical spin injection from ZnMnSe into InGaAs-based quantum structures. Physica ( E) Low-Dimens. Syst. Nanostrut 32(1-2): 434-437
Motsnyi, V.F.; Safarov, V.I.; Van Dorpe, P.; Das, J.; Van Roy, W.; Goovaerts, E.; Borghs, G.; De Boeck, J. 2003: Electrical spin injection in a ferromagnetic metal/insulator/semiconductor tunnel heterostructure. Journal of Superconductivity 16(4): 671-678
Ohno, Y.; Young, D.K.; Beschoten, B.; Matsukura, F.; Ohno, H.; Awschalom, D.D. 1999: Electrical spin injection in a ferromagnetic semiconductor heterostructure. Nature (London) 402(6763): 790-792
Ludwig, A.; Roescu, R.; Wende, H.; Keune, W.; Reuter, D.; Wieck, A.D.; Rai, A.K.; Trunov, K.; Stromberg, F.; Li, M.; Soldat, H.; Ebbing, A.; Gerhardt, N.C.; Hofmann, M.R. 2011: Electrical spin injection in InAs quantum dots at room temperature and adjustment of the emission wavelength for spintronic applications. J. Cryst. Growth 323(1): 376-379
Miura, K.; Ono, T.; Nasu, S.; Okuno, T.; Mibu, K.; Shinjo, T. 2005: Electrical spin injection in Ni81Fe19/Al/Ni81Fe19 with double tunnel junctions. J. Magn. Magn. Mater 286: 142-145
Sinsarp, A.; Manago, T.; Takano, F.; Akinaga, H. 2007: Electrical spin injection in perpendicular magnetized FePt/MgO/GaAs heterostructures at room temperature. J. Supercond. Nov. Magn 20(6): 405-408
Santos, E.J.G. 2013: Electrical Spin Switch in Hydrogenated Multilayer Graphene. Journal of Physical Chemistry. C 117(12): 6420-6425
Rey, C.M.; Tong, W.; Xu, M.F. 1999: Electrical splice resistance measurements and analysis on high purity aluminum. Cryogenics (Guildford) 39(6): 509-515
Gaucci, P.; Mariucci, L.; Valletta, A.; Pecora, A.; Fortunato, G.; Templier, F. 2007: Electrical stability in self-aligned p-channel polysilicon thin film transistors. E-Mrs 2006 Spring Meeting: Symposium i on Thin Films for Large Area Electronics (Nice 2006-06) 515(19): 7571-7575
Radwan, A.E. 1991: Electrical stability of a cylindrical fluid interface utilizing the energy principle. Journal of Magnetism and Magnetic Materials 98(1-2): 173-184
Chou, Y.S.; Stevenson, J.W.; Xia, G.G.; Yang, Z.G. 2010: Electrical stability of a novel sealing glass with (Mn,Co)-spinel coated Crofer22APU in a simulated SOFC dual environment. Journal of Power Sources 195(17): 5666-5673
Yoo, G.; Lee, H.; Kanicki, J. 2010: Electrical Stability of Hexagonal a-Si:H TFTs. IEEE Electron Device Letters 31(1): 53-55
Benor, A.; Hoppe, A.; Wagner, V.; Knipp, D. 2007: Electrical stability of pentacene thin film transistors. Organic Electronics 8(6): 749-758
Homma, T.; Yamaguchi, M.; Kutsuzawa, Y.; Otsuka, N. 1999: Electrical stability of polyimide siloxane films for interlayer dielectrics in multilevel interconnections. Thin Solid Films 340(1-2): 237-241
De Negri, M. 1997: Electrical status epilepticus during sleep (ESES). Different clinical syndromes : towards a unifying view?. Brain and Development (Tokyo 1979) 19(7): 447-451
Anonymous 1983: Electrical steel sheets - Tôles électriques. Nippon Steel Technical Report. Overseas (21): 127-134
Chiricozzi, E.; Parasiliti, F.; Villani, M.; Vigliaturo, G.; Gubiotti, R. 1994: Electrical steels for high-efficiency motors. J. Magn. Magn. Mater 133(1-3): 533-535
Moses, A.J. 1990: Electrical steels : past, present and future developments. Iee Proceedings. Part A. Physical Science, Measurements and Instrumentation, Management and Education, Reviews 137(5): 233-245
Blanke, M.; Thomsen, J.S. 2006: Electrical steering of vehicles - : fault-tolerant analysis and design. Microelectron. Reliab 46(9-11): 1421-1432
Mameka, N.; Markmann, J.; Jin, H.J.; Weissmuller, J. 2014: Electrical stiffness modulation—confirming the impact of surface excess elasticity on the mechanics of nanomaterials. Acta Materialia 76: 272-280
Sarawate, N.N.; Dapino, M.J. 2007: Electrical stiffness tuning in-ferromagnetic shape memory Ni-Mn-Ga. Proc. Spie Int. Soc. Opt. Eng: 652916.1-652916.10
Hopp, J.F.; Palmer, W.K. 1990: Electrical stimulation alters fatty acid metabolism in isolated skeletal muscle. Journal of Applied Physiology (1985) 68(6): 2473-2481
Drew, K.R.; Crosbie, S.F.; Forss, D.A.; Manley, T.R.; Pearse, A.J. 1988: Electrical stimulation and ageing of carcasses from red, fallow and New Zealand wapiti-type male deer - Stimulation électrique et maturation des carcasses de cerf, daim ou cerf de Nouvelle Zélande proche du wapiti. Journal of the Science of Food and Agriculture 43(3): 245-259
Dehail, P.; Duclos, C.; Barat, M. 2008: Electrical stimulation and muscle strengthening - Electrostimulation et gain de force musculaire. Annales de Readaptation et de Medecine Physique 51(6): 441-451
Jimbo, Y.; Kawana, A. 1992: Electrical stimulation and recording from cultured neurons using a planar electrode array. Bioelectrochemistry and Bioenergetics 29(2): 193-204
Weiss, D.S.; Kirsner, R.; Eaglstein, W.H. 1990: Electrical stimulation and wound healing. Archives of Dermatology (1960) 126(2): 222-225
Nappi, R.E.; Ferdeghini, F.; Abbiati, I.; Vercesi, C.; Farina, C.; Polatti, F. 2003: Electrical stimulation (ES) in the management of sexual pain disorders. J. Sex Marital Ther 29: 103-110
Velasco, F.; Velasco, M.; Velasc, A.L.; Menez, D.; Rocha, L. 2002: Electrical stimulation for epilepsy: Stimulation of hippocampal foci. Meeting of the World Society for Stereotactic and Functional Neurosurgery 77(1-4): 223-227
Bertrand, S.L.; Drvaric, D.M.; Lange, N.; Lucas, P.R.; Deutsch, S.D.; Herndon, J.H.; Roberts, J.M. 1992: Electrical stimulation for idiopathic scoliosis. Clinical Orthopaedics and Related Research (276): 176-181
Shi, Y.B.; Binette, M.; Martin, W.H.; Pearson, J.M.; Hart, R.A. 2003: Electrical stimulation for intraoperative evaluation of thoracic pedicle screw placement. Spine (Philadelphia, Pa 1976) 28(6): 595-601
Zoppi, M.; Zamponi, A. 1993: Electrical stimulation for the treatment of referred pain. Pain Research and Clinical Management 7: 391-402
Stolarz, D.J.; Thomas, J.D.; Ray, E.E.; Cardenas, M. 1984: Electrical stimulation, hot-boning and prerigor cookery effects on lamb Longissimus tenderness - Effets de la stimulation électrique, du désossage à chaud et de la cuisson pré-rigor sur la tendreté des muscles Longissimus d'agneau. Journal of Food Science 49(6): 1466-1488
Ohearn, T.M.; Sadda, S.R.; Weiland, J.D.; Maia, M.; Margalit, E.; Humayun, M.S. 2006: Electrical stimulation in normal and retinal degeneration (rdl) isolated mouse retina. Vision Research (Oxford) 46(19): 3198-3204
Ikomi, F.; Kousai, A.; Ono, N.; Ohhashi, T. 2002: Electrical stimulation-induced α1- and α2-adrenoceptors-mediated contractions of isolated canine lymph nodes. Autonomic Neuroscience : Basic and Clinical 96(2): 85-92
Bouamrirene, D.; Micallef, J.P.; Rouanet, P.; Bacou, F. 2000: Electrical stimulation-induced changes in double-wrapped muscles for dynamic graciloplasty. Archives of Surgery (Chicago, Il 1960) 135(10): 1161-1167
Lagey, C.L.R.S.; Roelofs, J.M.M.; Janssen, L.W.M.; Breedijk, M.; Lentferink, R.H.F.; Visser, W.J.; Akkermans, L.M.A.; Wittebol, P.; Renooij, W. 1986: Electrical stimulation of bone growth with direct current. Clinical Orthopaedics and Related Research 204: 303-312
Reis, D.J.; Berger, S.B.; Underwood, M.D.; Khayata, M. 1991: Electrical stimulation of cerebellar fastigial nucleus reducesn ischemic infarction elicited by middle cerebral artery occlusion in rat. Journal of Cerebral Blood Flow and Metabolism 11(5): 810-818
Plonsey, R.; Altman, K.W. 1988: Electrical stimulation of excitable cells―A model approach. Proceedings of the IEEE 76(9): 1122-1129
Brosalino, G.; Bagnacani, M.; Bettati, E.; Fornaciari, F.; Rocchi, R.; Uluhogian, S.; Geccherelli, G.; Cadossi, R.; Traina, G.C. 1988: Electrical stimulation of human femoral intertrochanteric osteotomies: double-blind study. Clinical Orthopaedics and Related Research (237): 256-263
Hamada, T.; Hayashi, T.; Kimura, T.; Nakao, K.; Moritani, T. 2004: Electrical stimulation of human lower extremities enhances energy consumption, carbohydrate oxidation, and whole body glucose uptake. Journal of Applied Physiology (1985) 96(3): 911-916
Zerath, E.; Canon, F.; Guezennec, C.Y.; Holy, X.; Renault, S.; Andre, C. 1995: Electrical stimulation of leg muscles increases tibial trabecular bone formation in unloaded rats. Journal of Applied Physiology (1985) 79(6): 1889-1894
Akai, M.; Oda, H.; Shirasaki, Y.; Tateishi, T. 1988: Electrical stimulation of ligament healing: an experimental study of the patellar ligament of rabbits. Clinical Orthopaedics and Related Research (235): 296-301
Aqueveque, P.; Lopez, R.; Pino, E.; Ogalde, A. 2013: Electrical stimulation of mental nerve to produce inhibitory action in bruxism treatment. Electronics Letters 49(3): 176-177
Kemink, J.L.; Kileny, P.R.; Niparko, J.K.; Telian, S.A. 1991: Electrical stimulation of the auditory system after labyrynthectomy. The American Journal of Otology (New York) 12(1): 7-10
Hartmann, R.; Topp, G.; Klinke, R. 1984: Electrical stimulation of the cat cochlea. Discharge pattern of single auditory fibres. Advances in Audiology 1: 18-29
Frank, M.P.; Steel, K.P.; Bock, G.R. 1983: Electrical stimulation of the cochlear nerve in deaf mice. Archives of Otolaryngology (1960) 109(8): 526-529
Olcese, J.; Reuss, S.; Steinlechner, S. 1987: Electrical stimulation of the hypothalamic nucleus paraventricularis mimics the effects of light on pineal melatonin synthesis. Life Sciences (1973) 40(5): 455-459
Schwartz, A.R.; Eisele, D.W.; Hari, A.; Testerman, R.; Erickson, D.; Smith, P.L. 1996: Electrical stimulation of the lingual musculature in obstructive sleep apnea. Journal of Applied Physiology (1985) 81(2): 643-652
Takahashi, Y.; Hirayama, J.; Nakajima, Y.; Ohtori, S.; Takahashi, K. 2000: Electrical stimulation of the rat lumbar spine induces reflex action potentials in the nerves to the lower abdomen. Spine (Philadelphia, Pa 1976) 25(4): 411-417
Romer, H.; Rheinlaender, J. 1983: Electrical stimulation of the tympanal nerve as a tool for analysing the responses of auditory interneurons in the locust. Journal of Comparative Physiology 152(3): 289-296
Matsumoto, N.; Kawarada, K.; Kamata, K.I.; Suzuki, T.A. 1993: Electrical stimulation of tooth pulp increases the expression of C-fos in the cat supraoptic nucleus but not in the paraventricular nucleus. Life Sciences (1973) 53(15): 1235-1241
Todd, I.; Clothier, R.H.; Huggins, M.L.; Patel, N.; Searle, K.C.; Jeyarajah, S.; Pradel, L.; Lacey, K.L. 2001: Electrical stimulation of transforming growth factor-β1 secretion by human dermal fibroblasts and the U937 human monocytic cell line. Atla. Alternatives to Laboratory Animals 29(6): 693-701
Powell, J.; Pandyan, A.D.; Granat, M.; Cameron, M.; Stott, D.J. 1999: Electrical stimulation of wrist extensors in poststroke hemiplegia. Stroke (1970) 30(7): 1384-1389
Ezaki, S.; Toko, K.; Yamafuji, K. 1990: Electrical stimulation on the growth of a root of the higher plant. Transactions of the Institute of Electronics and Communication Engineers of Japan. Section e 73(6): 922-927
Creasey, G.; Elefteriades, J.; Dimarco, A.; Talonen, P.; Bijak, M.; Girsch, W.; Kantor, C. 1996: Electrical stimulation to restore respiration. J. Rehabil. Res. Dev 33(2): 123-132
Lallechere, S.; Bonnet, P.; Paladian, F. 2014: Electrical stochastic modeling of cell for bio-electromagnetic compatibility applications. Annales des Telecommunications 69(5-6): 295-308
Credner, S.; Gronefeld, G.; Klingenheben, T.; Sticherling, C.; Hohnloser, S.H. 1999: Electrical storm after ICD implantation. Cardiovascular Reviews and Reports 20(9): 481-484
Rodehed, C.; Gustafsson, A.; Gedde, U.W. 1990: Electrical strength and chemical surface analysis of polypropylene after exposure to external partial discharges. IEEE Transactions on Electrical Insulation 25(6): 1066-1076
Hoyos, M.; Garcia, N.; Navarro, R.; Dardano, A.; Ratto, A.; Guastavino, F.; Tiemblo, P. 2008: Electrical Strength in Ramp Voltage AC Tests of LDPE and Its Nanocomposites with Silica and Fibrous and Laminar Silicates. Journal of Polymer Science. Part B. Polymer Physics 46(13): 1301-1311
Koryavin, A.R.; Volkova, O.V. 2001: Electrical strength of an insulating structure with an isolated conducting body. Russian Electrical Engineering 72(9): 36-42
Borisova, M.E.; Marchenko, M.S. 1998: Electrical strength of polyimide films. Russian Electrical Engineering 69(5): 5-8
Kadzov, G.D.; Sokolov, M.I.; Ponomarev, V.N.; Safronov, N.B. 1992: Electrical strength of polymer insulators under short voltage pulses. Soviet Electrical Engineering 63(7): 7-12
Koryavin, A.R.; Volkova, O.V.; Almazov, A.V. 1996: Electrical strength of the external insulation of superhigh- and ultrahigh-voltage terminals. Russian Electrical Engineering 67(8): 23-27
Kuzmin, S.V.; Saha, P.; Sudar, N.T.; Zakrevskii, V.A.; Sapurina, I.; Solosin, S.; Trchova, M.; Stejskal, J. 2008: Electrical strength of thin polyaniline films. Thin Solid Films 516(8): 2181-2187
Salama, M.M.A.; Rizk, M.S.; Hackam, R. 1986: Electrical stress and inception voltage of discharges in gaseous cavities in an anisotropic dielectric material. Journal of Applied Physics 60(7): 2600-2608
Palumbo, D.; Masala, S.; Tassini, P.; Rubino, A.; Della Sala, D. 2007: Electrical stress degradation of small-grain polysilicon thin-film transistors. Ieee Trans. Electron Devices 54(3): 476-482
Malik, N.H.; Alarainy, A.A. 1987: Electrical stress distribution in three-core belted power cables. IEE/PES 1986 Summer Meeting (Mexico 1986) 2(3): 589-595
Ihn, T.H.; Lee, B.I.; Joo, S.K.; Jeon, Y.C. 1997: Electrical stress effect on poly-Si thin film transistors fabricated by metal induced lateral crystallization. Jpn. J. Appl. Phys 36(8): 5029-5032
Huang, S.Y.; Chen, K.M.; Huang, G.W.; Hung, C.C.; Liao, W.S.; Chang, C.Y. 2008: Electrical stress effect on RF power characteristics of SiGe hetero-junction bipolar transistors. Microelectronics and Reliability 48(2): 193-199
Kao, H.L.; Chin, A.; Liao, C.C.; Chen, C.C.; Mcalister, S.P.; Chi, C.C. 2006: Electrical-stress effects and device modeling of 0.18-μm RF MOSFETs. Ieee Trans. Electron Devices 53(4): 636-642
Zander, D.; Saigne, F.; Petit, C.; Meinertzhagen, A. 2001: Electrical stress effects on ultrathin (2.3 nm) oxides. J. Non-Cryst. Solids 280(1-3): 86-91
Gupta, D.; Yoo, S.; Lee, C.; Hong, Y. 2011: Electrical-Stress-Induced Threshold Voltage Instability in Solution-Processed ZnO Thin-Film Transistors: An Experimental and Simulation Study. Ieee Trans. Electron Devices 58(7): 1995-2002
Loisos, G.; Moses, A.J.; Beckley, P. 2003: Electrical stress on electrical steel coatings. J. Magn. Magn. Mater 254-55: 340-342
Rafi, J.M.; Simoen, E.; Mercha, A.; Hayama, K.; Campabadal, F.; Ohyama, H.; Claeys, C. 2007: Electrical stress on irradiated thin gate oxide partially depleted SOI nMOSFETs. Infos 2007 Biennial Conference on Insulating Films on Semiconductors 84(9-10): 2081-2084
Mbaye, A.; Bellomo, J.P.; Lebey, T.; Oraison, J.M.; Peltier, F. 1997: Electrical stresses applied to stator'insulation in low-voltage induction motors fed by PWM drives. Iee Proceedings. Electric Power Applications 144(3): 191-198
Stojadinovic, N.; Manic, I.; Davidovic, V.; Dankovic, D.; Djoricveljkovic, S.; Golubovic, S.; Dimitrijev, S. 2006: Electrical stressing effects in commercial power VDMOSFETs. Iee Proceedings. Circuits, Devices and Systems 153(3): 281-288
Kouvatsos, D.N.; Vamvakas, V.E.; Davazoglou, D. 2002: Electrical stressing effects in solid-phase crystallized polysilicon thin film transistors. Semiconductor Science and Technology 17(6): 515-521
Waite, A.; Evans, A.G.R.; Afsharhanaii, N. 1994: Electrical stressing of submicrometre MOSFETs with raised source/drain structures realised by selective epitaxial growth of silicon using silane only. Electronics Letters 30(17): 1455-1456
Collins, R.A.; Mohammed, K.A. 1986: Electrical, structural and gas sensing properties of zinc phthalocyanine thin films. Thin Solid Films 145(1): 133-145
Nagaraja, M.; Pattar, J.; Shashank, N.; Manjanna, J.; Kamada, Y.; Rajanna, K.; Mahesh, H.M. 2009: Electrical, structural and magnetic properties of polyaniline/pTSA-TiO2 nanocomposites. Synthetic Metals 159(7-8): 718-722
Siva Pratap Reddy, M.; Rajagopal Reddy, V.; Jyothi, I.; Choi, C.J. 2011: Electrical, structural and morphological characteristics of rapidly annealed Ni/Pd Schottky rectifiers on n-type GaN. Surface and Interface Analysis 43(9): 1251-1256
Ashok Kumar, A.; Janardhanam, V.; Rajagopal Reddy, V. 2011: Electrical, structural and morphological characteristics of rapidly annealed Pd/n-InP (100) Schottky structure. Journal of Materials Science. Materials in Electronics 22(7): 854-861
Guillensantiago, A.; De la L Olvera, M.; Maldonado, A.; Asomoza, R.; Acosta, D.R. 2004: Electrical, structural and morphological properties of chemically sprayed F-doped ZnO films: effect of the ageing-time of the starting solution, solvent and substrate temperature. Physica Status Solidi. A. Applied Research 201(5): 952-959
Figueiredo, V.; Elangovan, E.; Goncalves, G.; Franco, N.; Alves, E.; Park, S.H.K.; Martins, R.; Fortunato, E. 2009: Electrical, structural and optical applicate characterization of copper oxide thin films as a function of post annealing temperature. Phys. Status Solidi, A Appl. Mater. Sci. (Print) 206(9): 2143-2148
Metcalf, P.A.; Guha, S.; Gonzalez, L.P.; Barnes, J.O.; Slamovich, E.B.; Honig, J.M. 2007: Electrical, structural, and optical properties of Cr-doped and non-stoichiometric V2O3 thin films. Thin Solid Films 515(7-8): 3421-3425
Rozati, S.M.; Moradi, S.; Golshahi, S.; Martins, R.; Fortunato, E. 2010: Electrical, structural and optical properties of fluorine-doped zinc oxide thin films: Effect of the solution aging time. Thin Solid Films 518(4): 1279-1282
Jong Hoon, K.I.M.; Kyung Ah, J.E.O.N.; Gun Hee, K.I.M.; Sang Yeol, L.E.E. 2006: Electrical, structural, and optical properties of ITO thin films prepared at room temperature by pulsed laser deposition. Appl. Surf. Sci 252(13): 4834-4837
Yadav, A.A.; Masumdar, E.U.; Moholkar, A.V.; Neumannspallart, M.; Rajpure, K.Y.; Bhosale, C.H. 2009: Electrical, structural and optical properties of SnO2:F thin films: Effect of the substrate temperature. Journal of Alloys and Compounds 488(1): 350-355
Serin, T.; Serin, N.; Karadeniz, S.; Sari, H.; Tugluoglu, N.; Pakma, O. 2006: Electrical, structural and optical properties of SnO2 thin films prepared by spray pyrolysis. Journal of Non-Crystalline Solids 352(3): 209-215
Li, L.I.; Lizzul, C.; Hansoo, K.I.M.; Sacolick, I.; Morris, J.E. 1993: Electrical, structural and processing properties of electrically conductive adhesives. Ieee Trans. Components Hybrids Manuf. Technol 16(8): 843-851
Ctirad, U.H.E.R.; Cohn, J.L.; Miceli, P.F.; Zabel, H. 1987: Electrical, structural, and superconducting properties of hydrogenated Nb-Ta superlattices - Propriétés électriques, structurales et supraconductrices de superréseaux Nb-Ta préparés par épitaxie en jet moléculaire, avec des longueurs d'onde de modulation de 20 et 85 Å. L'hydrogène augmente la résistivité de la structure et conduit, dans certains cas, à une variation logarithmique en fonction de la température à très basse température. Physical Review. B, Condensed Matter 36(1): 815-818
Jyothi, I.; Rajagopal Reddy, V. 2010: Electrical, structural and surface morphological properties of thermally stable low-resistance W/Ti/Au multilayer ohmic contacts to n-type GaN. Applied Surface Science 257(1): 67-71
Bilgin, V.; Akyuz, I.; Ketenci, E.; Kose, S.; Atay, F. 2010: Electrical, structural and surface properties of fluorine doped tin oxide films. Applied Surface Science 256(22): 6586-6591
Isreb, M. 1993: Electrical-structural engineering finite element modelling education. Computers and Structures 46(3): 573-577
Mustafa, I.S.R.E.B. 1986: Electrical-structural finite element analysis software design. Computers and Structures 22(5): 759-762
Hemeda, D.M.; Hemeda, O.M. 2008: Electrical, structural, magnetic and transport properties of Zn2BaFe16O27 doped with Cu2+. Journal of Magnetism and Magnetic Materials 320(8): 1557-1562
Ni, J.; Zhao, X.; Zheng, X.; Zhao, J.; Liu, B. 2009: Electrical, structural, photoluminescence and optical properties of p-type conducting, antimony-doped SnO2 thin films. Acta Materialia 57(1): 278-285
Gokarn, S.G.; Gupta, G.; Rao, C.K.; Selvaraj, C. 2002: Electrical structure across the Indus Tsangpo suture and Shyok suture zones in NW Himalaya using magnetotelluric studies. Geophysical Research Letters 29(8): 92.1-92.4
Marshall, T.C.; Rust, W.D.; Stolzenburg, M. 1995: Electrical structure and updraft speeds in thunderstorms over the southern Great Plains. Journal of Geophysical Research 100(D 1): 1001-1015
Baba, K. 2005: Electrical structure in marine tectonic settings. Surv. Geophys 26(6): 701-731
Maynard, N.C.; Hale, L.C.; Mitchell, J.D.; Schmidlin, F.J.; Goldberg, R.A.; Barcus, J.R.; Sraas, F.; Croskey, C.L. 1984: Electrical structure in the high-latitude middle atmosphere. J. Atmos. Terr. Phys 46(9): 807-817
Stolzenburg, M.; Rust, W.D.; Marshall, T.C. 1998: Electrical structure in thunderstorm convective regions 2. Isolated storms. J. Geophys. Res 103(D12): 14079-14096
Stolzenburg, M.; Rust, W.D.; Smull, B.F.; Marshall, T.C. 1998: Electrical structure in thunderstorm convective regions 1. Mesoscale convective systems. J. Geophys. Res 103(D12): 14059-14078
Stolzenburg, M.; Rust, W.D.; Marshall, T.C. 1998: Electrical structure in thunderstorm convective regions 3. Synthesis. J. Geophys. Res 103(D12): 14097-14108
Yajun, L.I.; Guangshu, Z.H.A.N.G.; Jun, W.E.N.; Daohong, W.A.N.G.; Yanhui, W.A.N.G.; Tong, Z.H.A.N.G.; Xiangpeng, F.A.N.; Bin, W.U. 2013: Electrical structure of a Qinghai―Tibet Plateau thunderstorm based on three-dimensional lightning mapping. Atmospheric Research 134: 137-149
Ozeki, S.; Tanaka, K.; Seki, H. 1991: Electrical structure of ((dodecyloxy)methyl)-18-crown-6 micelles in aqueous potassium chloride solutions : electrophoretic light scattering and 2D NMR. Journal of Physical Chemistry (1952) 95(14): 5689-5692
Van Zijl, J.S.V.; De Beer, J.H. 1983: Electrical structure of the Damara Orogen and its tectonic significance - Données électriques sur la structure de l'orogène Damara et signification tectonique. Spec. Publ. - Geol. Soc. S. Afr (11): 369-379
Lemonnier, C.; Marquis, G.; Perrier, F.; Avouac, J.P.; Chitrakar, G.; Kafle, B.; Sapkota, S.; Gautam, U.; Tiwari, D.; Bano, M. 1999: Electrical structure of the Himalaya of Central Nepal: high conductivity around the mid-crustal ramp along the MHT. Geophysical Research Letters 26(21): 3261-3264
Doughty, R.L.; Gise, L.; Kalkstein, E.W.; Willoughby, R.D. 1989: Electrical studies for an industrial gas turbine cogeneration facility. IEEE Transactions on Industry Applications 25(4): 750-765
Shri, P.A.L.; Pandey, S.D.; Prem, C.H.A.N.D. 1989: Electrical studies in some alkali titanates. Solid State Communications 69(12): 1203-1206
Siegel, W.; Sidelnicov, A.; Kuhnel, G. 2002: Electrical studies in the microenvironment of dislocations in undoped high-resistivity GaAs. Mater. Sci. Eng., B, Solid-State Mater. Adv. Technol 91-92: 403-406
Oraison, J.M.; Boiteux, G.; Seytre, G. 1989: Electrical studies of heat resistant polymers. Makromol. Chem., Macromol. Symp 24: 341-347
Bano, N.; Hashmi, R.A. 1996: Electrical studies of leaves over wide frequency range. IEEE Transactions on Dielectrics and Electrical Insulation 3(2): 229-232
Ghader, E.F.T.E.K.H.A.R.I. 1995: Electrical studies of rapidly annealed Ni and Pd/n-GaAs Schottky diodes. Jpn. J. Appl. Phys 34(5A): 2247-2251
Jamal Deen, M.; Iniguez, B.; Marinov, O.; Lime, F. 2006: Electrical studies of semiconductor-dielectric interfaces. Journal of Materials Science. Materials in Electronics 17(9): 663-683
Swan, R.; Ray, A.K.; Hogarth, C.A.; Mukherjee, D. 1989: Electrical studies of tellurium films. Electronics Letters 25(21): 1460-1462
Atanassova, E.; Dimitrova, T. 1993: Electrical studies of the reactions between ethanol vapours and inversion mode Si-thin SiO2 structures. Solid-State Electronics 36(12): 1711-1716
Henry, A.; Awadelkarim, O.O.; Hallin, C.; Lindstrom, J.L.; Oehrlein, G.S. 1991: Electrical studies on annealed D2 plasma-exposed silicon. Journal of the Electrochemical Society 138(5): 1456-1460
Murthy, K.S.R.C.; Ghose, J. 1987: Electrical studies on CuRh2O4. Journal of Solid State Chemistry 71(2): 441-443
Agarwal, M.K.; Patel, P.D.; Vijayan, O. 1983: Electrical studies on (Mo/W)Se2 single crystals. I: Electrical resistivity. Physica Status Solidi. A. Applied Research 78(1): 133-136
Agarwal, M.K.; Patel, P.D.; Vijayan, O. 1983: Electrical studies on (Mo/W)Se2 single crystals. II: Temperature dependence of Hall effect. Physica Status Solidi. A. Applied Research 78(2): 469-473
Agarwal, M.K.; Patel, P.D.; Vijayan, O. 1983: Electrical studies on (Mo/W)Se2 single crystals. III: Anisotropy in resistivity. Physica Status Solidi. A. Applied Research 79(1): 103-108
Henry, A.; Awadelkarim, O.O.; Lindstrom, J.L.; Oehrlein, G.S. 1989: Electrical studies on plasma and reactive-ion-etched silicon. Journal of Applied Physics 66(11): 5388-5393
Ibrahim, A.S.; Attia, G.; Aboellil, M.S.; Abd Elkader, F.H. 1997: Electrical studies on PVA-PE copolymer. Journal of Applied Polymer Science 63(3): 343-348
Natarajan, G.; Rajendra Kumar, R.T.; Daniels, S.; Cameron, D.C.; Mcnally, P.J. 2008: Electrical studies on sputtered CuCl thin films. J. Mater. Sci., Mater. Electron 19(2): 103-106
Bianchi, R.F.; Da Cunha, H.N.; Faria, R.M.; Leal Ferreira, G.F.; Neto, J.M.G. 2005: Electrical studies on the doping dependence and electrode effect of metal-PANI-metal structures. Journal of Physics. D, Applied Physics 38(9): 1437-1443
Lantto, V.; Romppainen, P. 1987: Electrical studies on the reactions of CO with different oxygen species on SnO2 surfaces. Surface Science 192(1): 243-264
Zeenath, N.A.; Varkey, K.P.; Vijayakumar, K.P. 1998: Electrical studies on trap levels present in n- and p-type spray pyrolysed CdS thin films. Journal of Physics. Condensed Matter 10(9): 2053-2063
Ashok Kumar, B.A.R.A.L.; Sankaranarayanan, V. 2010: Electrical study and dielectric relaxation behavior in nanocrystalline Ce0.85Gd0.15O2―δ material at intermediate temperatures. Applied Physics. A, Materials Science and Processing 98(2): 367-373
Chaabane, I.; Hiel, F.; Guidara, K. 2008: Electrical study by impedance spectroscopy of the new compound [C12H17N2]2CdCl4. Journal of Alloys and Compounds 461(1-2): 495-500
Stallinga, P.; Gomes, H.L.; Jones, G.W.; Taylor, D.M. 1999: Electrical study of impurity states in conjugated polymers. International Conference on Science and Technology of Synthetic Metals 101(1-3): 496-497
Elfajri, A.; Moussetad, M.; Tardy, P.; Barriere, A.S. 2000: Electrical study of Pr3+ ion environment in Ca1-xPrxF2+x thin films. Physica Status Solidi. A. Applied Research 179(2): 373-386
Newman, N.; Kendelewicz, T.; Bowman, L.; Spicer, W.E. 1985: Electrical study of Schottky barrier heights on atomically clean and air-exposed n-InP (110) surfaces. Applied Physics Letters 46(12): 1176-1178
Lin, H.C.; Wang, W.E.; Brammertz, G.; Meuris, M.; Heyns, M. 2009: Electrical study of sulfur passivated lno.53Gao.47As MOS capacitor and transistor with ALD Al2O3 as gate insulator. Insulating Films on Semiconductors. International Conference 86(7-9): 1554-1557
Eltanahy, Z.H.; Hosny, W.M.; Abutaleb, M.; Abdelkader, M.M. 1995: Electrical study of the phase transition in some hydrogen oxalates. Thermochimica Acta 262: 87-94
Morfouli, P.; Pananakakis, G. 1989: Electrical study of thin SiO2 layers obtained by anodic oxidation of p-type silicon in pure water using I-U, C-U, and G-U measurements. Physica Status Solidi. A. Applied Research 111(2): 529-539
Lea, J.F.; Powers, B. 1984: Electrical submersible pump teardown inspection. I: Component description and dismantle procedure. Petroleum Engineer International 56(5): 48-56
Penchev, V.B.; Etarski, V.S.; Valkov, V.I. 1990: Electrical supply circuit for electron beam evaporators. Vacuum 41(4-6): 1396-1399
Witkamp, G. 1983: Electrical supply systems for hangars - Systèmes d'alimentation en électricité pour hangars. Airport Forum 13(4): 79-82
Turky, A.M. 2003: Electrical surface and catalytic properties of NiO as influenced by doping with CuO and Ag2O. Applied Catalysis. A, General 247(1): 83-93
Torrey, D.A.; Kirtley, J.L. 1986: Electrical surface breakdown of thin-film ZNO varistors. IEEE Transactions on Electrical Insulation 21(4): 585-590
Martin, P.; Dufour, M.; Ermolieff, A.; Marthon, S.; Pierre, F.; Dupuy, M. 1992: Electrical surface conductivity in quartz induced by ion implantation. Journal of Applied Physics 72(7): 2907-2911
Varma, A.J.; Jog, J.P.; Nadkarni, V.M. 1983: Electrical surface conductivity of fluorinated polymer films after chemical surface treatment. die Makromolekulare Chemie. Rapid Communications 4(11): 715-719
Morono, A.; Hodgson, E.R.; Gonzalez de Vicente, S.M. 2009: Electrical surface degradation of electron irradiated sapphire and silica. J. Nucl. Mater 386-88: 1002-1005
Shubin, V.E.; Isakova, I.V.; Sidorova, M.P.; Menshikova, A.Y.U.; Evseeva, T.G. 1990: Electrical-surface properties of carboxyl latex and their analysis on the basis of an ion pairs model. Kolloidnyj Zurnal 52(5): 935-941
Zhang, H.; Hackam, R. 1999: Electrical surface resistance, hydrophobicity and diffusion phenomena in PVC. IEEE Transactions on Dielectrics and Electrical Insulation 6(1): 73-83
Gomes de Souza, F.; Guenther Soares, B.; Pinta, J.C. 2008: Electrical surface resistivity of conductive polymers : A non-Gaussian approach for determination of confidence intervals. European Polymer Journal 44(11): 3908-3914
Bernasik, A.; Rekas, M.; Sloma, M.; Weppner, W. 1994: Electrical surface versus bulk properties of Fe-doped TiO2 single crystals. Solid State Ionics- 93. International Conference 72: 12-18
Ashruf, C. 2002: Electrical switches use conductive rubber. European Rubber Journal (1982) 184(10): 22-24
Li, J.C. 2009: Electrical switching and memory phenomena observed in redox dendrimer thin films. Thin Solid Films 517(11): 3385-3388
Stefanovich, G.; Pergament, A.; Stefanovich, D. 2000: Electrical switching and Mott transition in VO2. Journal of Physics. Condensed Matter 12(41): 8837-8845
Das, C.; Mahesha, M.G.; Mohan Rao, G.; Asokan, S. 2012: Electrical switching and optical studies on amorphous GexSe35-xTe65 thin films. Thin Solid Films 520(6): 2278-2282
Das, C.; Mohan Rao, G.; Asokan, S. 2011: Electrical switching and thermal studies on bulk Ge-Te-Bi glasses. Journal of Non-Crystalline Solids 357(1): 165-169
Pattanayak, P.; Asokan, S. 2007: Electrical switching and thermal studies on Ge22Te78-ΧIΧ chalcohalide glasses: The effect of iodine on network-topology. Solid State Communications 142(12): 698-701
Ikkala, O.; Ruokolainen, J.; Makinen, R.; Torkkeli, M.; Serimaa, R.; Makela, T.; Ten Brinke, G. 1999: Electrical switching based on dimensionality transitions in nanostructured polymers. International Conference on Science and Technology of Synthetic Metals 102(1-3): 1498-1501
Das, C.; Lokesh, R.; Mohan Rao, G.; Asokan, S. 2010: Electrical switching behavior of amorphous Al23Te77 thin film sample. Journal of Non-Crystalline Solids 356(41-42): 2203-2206
Anbarasu, M.; Asokan, S. 2005: Electrical switching behavior of bulk As-Te-Si glasses: composition dependence and topological effects. Applied Physics. A, Materials Science and Processing 80(2): 249-252
Slankamenac, M.P.; Lukicpetrovic, S.R.; Zivanov, M.B.; Cajko, K. 2012: Electrical switching behavior of bulk CuxAsSe1.4I0.2100―x glasses: Composition dependence and topological effects. Solid State Communications 152(13): 1160-1163
Lokesh, R.; Udayashankar, N.K.; Asokan, S. 2010: Electrical switching behavior of bulk Si15Te85-xSbx chalcogenide glasses - A study of compositional dependence. Journal of Non-Crystalline Solids 356(6-8): 321-325
Prakash, S.; Asokan, S.; Ghare, D.B. 1994: Electrical switching behaviour of semiconducting aluminium telluride glasses. Semiconductor Science and Technology 9(8): 1484-1488
Iwasa, Y.; Watanabe, N.; Koda, T.; Koshihara, S.; Tokura, Y.; Iwasawa, N.; Saito, G. 1990: Electrical switching effect in organic charge transfer compounds. Mol. Cryst. Liq. Cryst 183: 177-180
Lakshmi, K.P.; Asokan, S. 2013: Electrical switching in amorphous Si―Te―Ge thin films: Impact of input energy on crystallization process and switching parameters. J. Non-Cryst. Solids 377: 175-178
Selvaraju, V.C.; Asokan, S.; Srinivasan, V. 2004: Electrical switching in As-Te-Ag system: composition and temperature dependence. Journal of Non-Crystalline Solids 333(1): 16-21
Collins, R.A.; Abass, A.K. 1993: Electrical switching in Au-PbPc-Au thin film sandwich devices. Thin Solid Films 235(1-2): 22-24
Vasambekar, P.N.; Kolekar, C.B.; Vaingankar, A.S. 1999: Electrical switching in CdxCo1-xFe2-yCryO4 system. Materials Research Bulletin 34(6): 863-868
Karuppannan, R.; Ganesan, V.; Asokan, S. 2011: Electrical Switching in Cu—As—Se Glasses. International Journal of Applied Glass Science 2(1): 52-62
Machida, Y.; Saito, Y.; Taomoto, A.; Nichogi, K.; Waragai, K.; Asakawa, S. 1989: Electrical switching in evaporated lead phthalocyanine films. Jpn. J. Appl. Phys 28(2): 297-298
Son, Y.W.; Ihm, J.; Cohen, M.L.; Louie, S.G.; Hyoung Joon, C.H.O.I. 2005: Electrical switching in metallic carbon nanotubes. Physical Review Letters 95(21): 216602.1-216602.4
Vaingankar, A.S.; Kamble, P.N.; Kulkarni, V.R. 1990: Electrical switching in mixed CdxCu1-xFe2O4 system. Indian Journal of Pure and Applied Physics 28(9): 508-511
Bansal, T.K.; Sadhana, B.A.N.S.A.L.; Mendiratta, R.G. 1988: Electrical switching in partially crystallized Fe2O3-K2O-V2O5 glasses. Journal of Non-Crystalline Solids 99(1): 168-177
Friedenberg, A.; Shapira, Y. 1983: Electrical switching in silver chloride. Journal of Applied Physics 54(9): 5171-5175
Soltan, A.S.; Moharram, A.H. 2004: Electrical switching in the chalcogenide As60-xTe40Cux glasses. Physica. B, Condensed Matter 349(1-4): 92-99
Mirzayi, M.; Hekmatshoar, M.H. 2010: Electrical switching in the CuO―ZnO―P2O5 glasses. Physica. B, Condensed Matter 405(21): 4505-4508
Taylor, G.W.; Downey, P.M.; Simmons, J.G. 1988: Electrical switching in the three terminal double heterostructure opto-electronic switchin device-active layer contact. Solid-State Electronics 31(12): 1695-1701
Kalkan, N.; Yildirim, S.; Ulutas, K.; Deger, D. 2008: Electrical Switching in TlSbSe2 Chalcogenide Semiconductors. Journal of Electronic Materials 37(2): 157-160
Guzman, G.; Beteille, F.; Morineau, R.; Livage, J. 1996: Electrical switching in VO2 sol-gel films. Journal of Material Chemistry 6(3): 505-506
Rozhkov, V.A.; Petrov, A.I. 1998: Electrical switching of conductivity with memory effects in the structures with rare earth oxide films. Vide (1995) 53(287): 671-674
Cook, J.P.; Jason Riley, D. 2012: Electrical Switching of Microgel Swelling and Collapse for Display Applications. Journal of Polymer Science. Part B. Polymer Physics 50(7): 516-522
Rozhkov, V.A.; Shalimova, M.B.; Tybulewicz, A. 1993: Electrical switching of the resistance with memory in silicon MIS structures with erbium fluoride as the insulator. Semiconductors (Woodbury, N.Y.) 27(3): 245-249
No, K.; Berard, M.F. 1991: Electrical switching of two-phase ZnO-PrCoO3 threshold switching materials. Journal of Solid State Chemistry 90(1): 126-146
Taylor, G.W.; Simmons, J.G.; Mand, R.S.; Cho, A.Y. 1987: Electrical switching speed of the double-heterostructure optoelectronic switch. Ieee Trans. Electron Devices 34(5): 961-965
Mohammad Mahbubur, R.A.H.M.A.N.; Rukmani, K.; Asokan, S. 2011: Electrical switching studies on Ge-Te-Tl chalcogenide glasses: Effect of thallium on the composition dependence of switching voltages. Journal of Non-Crystalline Solids 357(3): 946-950
Asthana, S.; Fujiwara, K.; Tanaka, H. 2014: Electrical switching to probe complex phases in a frustrated manganite. Solid State Communications 187: 64-67
Hadley, R.D.; Kater, S.B.; Cohan, C.S. 1983: Electrical synapse formation depends on interaction mutually growing neurites. Science (Washington, D.C.) 221(4609): 466-468
Heitmann, J.K.R. 1986: Electrical system design for the SMPTE D-1 DTTR. Smpte Journal (1976) 95(12): 1215-1221
Zackrison, H.B. 2000: Electrical system retrofit : field survey techniques - Rénovation des installations électriques : techniques de vérification in situ. The Construction Specifier 53(6): 47-53
Lake, D.M. 2000: Electrical system upgrades enhance performance. Coal Age (Overland Park, Kan.) 105(9): 68-72
Hudson, M. 2001: Electrical systems push longwalls to the cutting edge. Coal Age (Overland Park, Kan.) 106(12): 32-34
Yates, L.A. 1986: Electrical tapes for coils, other applications. Electri.Onics 32(10): 68-70
Hellings, G.; Eneman, G.; Krom, R.; De Jaeger, B.; Mitard, J.; De Keersgieter, A.; Hoffmann, T.; Meuris, M.; De Meyer, K. 2010: Electrical TCAD Simulations of a Germanium pMOSFET Technology. Ieee Trans. Electron Devices 57(10): 2539-2546
Turner, J.D.; Austin, L. 2003: Electrical techniques for monitoring the condition of lubrication oil. Measurement Science and Technology 14(10): 1794-1800
Ieee, T.F. E. T. P. I. H. L. I. T. D. 1997: Electrical test methods for non-ceramic insulators used for live line replacement. 1996 IEEE Transmission and Distribution Conference 12(2): 965-970
Cooper, K.R.; Smith, M. 2006: Electrical test methods for on-line fuel cell ohmic resistance measurement. Journal of Power Sources 160(2): 1088-1095
Seong Eun, Y.A.N.G.; Dong Keun, P.A.R.K.; Ki Sung, C.H.A.N.G.; Young Jae, K.I.M.; Jin Bae, N.A.; Tae Kuk, K.O. 2010: Electrical Test of Bifilar-Wound Pancake Limiting Module Based on Multi-Stacked Coated Conductor for Application to a Power System. Ieee Trans. Appl. Supercond 20(3): 1308-1311
Economikos, L.; Morrison, T.; Crnic, F. 1994: Electrical test of multichip substrates. IEEE Transactions on Components, Packaging, and Manufacturing Technology. Part B, Advanced Packaging 17(1): 56-61
Nellis, C.L.; Sarkinen, S.H.; Bradley, D.A. 1986: Electrical test results of UHV airgraps and insulator configurations. Iee Proceedings. Part A. Physical Science, Measurements and Instrumentation, Management and Education, Reviews 133(8): 493-500
Keezer, D.C.; Patel, C.S.; Bakir, M.S.; Qing, Z.H.O.U.; Meindl, J.D. 2003: Electrical test strategies for a wafer-level packaging technology. IEEE Transactions on Electronics Packaging Manufacturing 26(4): 267-272
Syrzycki, M. 1990: Electrical test structure for measuring polysilicon-to-active mask misalignment. Electronics Letters 26(14): 1009-1012
Costello, S.; Desmulliez, M.P.Y.; Mccracken, S.; Abraham, E.; Lowrie, C.; Cargill, S. 2013: Electrical Test Structure for the Measurement of Hermeticity in Electronic and MEMS Packages With Small Cavity Volumes. Ieee Trans. Semicond. Manuf 26(3): 281-287
Vallet, M.; Sardin, P. 1999: Electrical testing for failure analysis : E-beam testing. Migas International Summer School on Advanced Microelectronics-Grenoble. Session 49(1-2): 157-167
Nourai, A.; Kolcio, N. 1990: Electrical testing of insulated aerial lifts for contamination using capacitive current compensation technique. IEEE/PES Transmission and Distribution Conference 5(2): 1054-1061
Roach, J.F.; Sanger, P.A.; Hartman, D.; Miller, J.R. 1997: Electrical testing of large scale IR&D dummy coil for TPX magnet insulation design verification. Ieee Trans. Appl. Supercond 7(2): 473-476
Lue, J.W.; Demko, J.A.; Tolbert, J.C.; Sinha, U.K.; Grabovickic, R.; Barber, G.C.; Gouge, M.J.; Lindsay, D.; Hughey, R.L. 2002: Electrical tests of a triaxial HTS cable prototype. Adv. Cryog. Eng 47: 606-613
Tixador, P.; Brunet, Y.; Vedrine, P.; Laumond, Y.; Sabrie, J.L. 1991: Electrical tests on a fully superconducting synchronous machine. Ieee Trans. Magn 27(2): 2256-2259
Smalley, M.V. 1994: Electrical theory of clay swelling. Langmuir 10(9): 2884-2891
Wei, W.A.N.G.; Dongxin, H.E.; Jiefeng, G.U.; Jian, L.U.; Jiazhen, D.U. 2014: Electrical-thermal aging characteristic research of polymer materials by infrared spectroscopy. Pcm 2014 Global Conference on Polymer and Composite Materials 25(12): 1396-1405
Koutcheiko, S.; Yoo, Y.; Davidson, I. 2005: Electrical, thermal and catalytic properties of CeO2-Sm0.5Ti0.5O1.75 ceramics. Ceramics International 31(7): 965-971
Daivajna, M.D.; Rao, A.; Okram, G.S. 2014: Electrical, thermal and magnetic properties of Bi doped La0.7-xBixSr0.3MnO3 manganites. Journal of Alloys and Compounds 617: 345-351
Shishido, H.; Nakamura, N.; Kindo, K.; Sugiyama, K.; Namiki, T.; Aoki, Y.; Sato, H.; Onuki, Y.; Ueda, T.; Asai, R.; Galatanu, A.; Yamamoto, E.; Haga, Y.; Takeuchi, T.; Narumi, Y.; Kobayashi, T.C. 2004: Electrical, thermal and magnetic properties of CeNiIn4. Journal of the Physical Society of Japan 73(3): 664-668
Dangelo, J.; Case, E.D.; Matchanov, N.; Wu, C.I.; Hogan, T.P.; Barnard, J.; Cauchy, C.; Hendricks, T.; Kanatzidis, M.G. 2011: Electrical, Thermal, and Mechanical Characterization of Novel Segmented-Leg Thermoelectric Modules. Journal of Electronic Materials 40(10): 2051-2062
Palza, H.; Reznik, B.; Wilhelm, M.; Arias, O.; Vargas, A. 2012: Electrical, Thermal, and Mechanical Characterization of Poly(propylene)/Carbon Nanotube/Clay Hybrid Composite Materials. Macromolecular Materials and Engineering 297(5): 474-480
Cai, A.H.; Xiong, X.; Liu, Y.; An, W.K.; Zhou, G.J.; Luo, Y.; Li, T.L.; Li, X.S. 2012: Electrical, thermal, and mechanical properties of Cu50Zr40Ti10 bulk amorphous composite. Materials Science and Engineering. A, Structural Materials : Properties, Microstructure and Processing 535: 92-98
Dai, Y.; Wang, Y.; Greenbaum, S.G.; Bajue, S.A.; Golodnitsky, D.; Ardel, G.; Strauss, E.; Peled, E. 1998: Electrical, thermal and NMR investigation of composite solid electrolytes based on PEO, LiI and high surface area inorganic oxides. Ispe-5 International Symposium on Polymer Electrolytes 43(10-11): 1557-1561
Fadel, M.; Elshair, H.T. 1992: Electrical, thermal and optical properties of Se75Ge7Sb18. Vacuum 43(3): 253-257
Ayliffe, M.H.; Kabal, D.; Lacroix, F.; Bernier, E.; Khurana, P.; Kirk, A.G.; Tooley, F.A.P.; Plant, D.V. 1999: Electrical, thermal and optomechanical packaging of large 2D optoelectronic device arrays for free-space optical interconnects. J. Opt. A, Pure Appl. Opt. (Print) 1(2): 267-271
Torres, A.F.I.L.H.O.; Lenz, R.W. 1993: Electrical, thermal, and photo properties of poly(phenylene vinylene) precursors. I: Laser-induced elimination reactions in precursor polymer films. Journal of Polymer Science. Part B. Polymer Physics 31(8): 959-970
Torresfilho, A.; Lenz, R.W. 1994: Electrical, thermal, and photo properties of poly(phenylene vinylene) precursors. II: Microwave-induced elimination reactions in precursor polymer films. Journal of Applied Polymer Science 52(3): 377-386
Jianyong, X.I.E.; Swaminathan, M. 2011: Electrical-Thermal Co-Simulation of 3d Integrated Systems with Micro-Fluidic Cooling and Joule Heating effects : Through Silicon Vias. IEEE Transactions on Components, Packaging, and Manufacturing Technology (2011. Print) 1(1-2): 234-246
Hatziathanassiou, V.; Xypteras, J.; Archontoulakis, G. 1994: Electrical-thermal coupled calculation of an asynchronous machine. Archiv für Elektrotechnik (Berlin) 77(2): 117-122
Guang Yu, H.U.A.N.G.; Cher Ming, T.A.N. 2011: Electrical―Thermal―Stress Coupled-Field Effect in SOI and Partial SOI Lateral Power Diode. IEEE Transactions on Power Electronics 26(5-6): 1723-1732
Lashkarev, G.V.; Brodovoi, A.V.; Radchenko, M.V.; Mirets, A.L.; Parenskaya, E.S.; Nikitin, M.S.; Rastegin, Y.I.; Kolesnik, S.P.; Tybulewicz, A. 1992: Electrical thermoelectric, and magnetic properties of indium-doped Cd0.2Hg0.8Te. Soviet Physics. Semiconductors 26(10): 990-993
Jones, R.E.; Wesolowski, S.P. 1984: Electrical, thermoelectric, and optical properties of strongly degenerate polycrystalline silicon films. Journal of Applied Physics 56(6): 1701-1706
Abhai, M.A.N.S.I.N.G.H.; Dhawan, V.K. 1983: Electrical threshold switching in vanadium-tellurite glasses. Philosophical Magazine. B. Physics of Condensed Matter. Electronic, Optical and Magnetic Properties 47(2): 121-138
Bosnjak, R.; Dolenc, V.V. 2000: Electrical thresholds for biomechanical response in the ankle to direct stimulation of spinal roots L4, L5, and S1 : Implications for intraoperative pedicle screw testing. Spine (Philadelphia, Pa 1976) 25(6): 703-708
Vasconcellos, C.A.M.; Curotto, C.L.; Benetti, C.; Sato, F.; Pinheiro, L.C. 2006: Electrical thunderstorm nowcasting using lightning data mining. Wit Transactions On Information And Communication Technologies v. 37: 161-166
Ohkawa, T.; Tsutsui, I. 1988: Electrical tolerance (breakdown) of the Chara corallina plasmalemma: I: Necessity of Ca2+. The Journal of Membrane Biology 103(3): 273-282
Ohkawa, T.A.; Tsutsui, I. 1990: Electrical tolerance (breakdown) of to Chara corallina plasmalemma. II, Inductive property of membrane and effects of pH0 and impermeable monovalent cations on breakdown phenomenon. The Journal of Membrane Biology 114(2): 159-173
Anonymous 1985: Electrical tracing of pipelines. Petrole Informations (1969) (1611): 33-34
Scandurra, A.; Indelli, G.; Compagnini, G.; Pignataro, S. 2003: Electrical transconduction through organic layers Si-C bonded to silicon substrates. Ngcm 2002 International Symposium and Summer School on Nano and Giga Challenges in Microelectronics 69(2-4): 532-535
Eshchin, E.K. 1999: Electrical transient processes in power supply system of mining machines. Russian Electrical Engineering 70(3): 48-53
Le Neel, O.; Haond, M. 1990: Electrical transient study of negative resistance in SOI MOS transistors. Electronics Letters 26(1): 73-74
Demoulias, C.S.; Dokopoulos, P. 1996: Electrical transients of windturbines in a small power grid. 1996 IEEE/PES Winter Meeting 11(3): 636-642
Hongxing, T.A.N.G.; Roukes, M.L. 2004: Electrical transport across an individual magnetic domain wall in (Ga, Mn)As microdevices. Physical Review B. Condensed Matter and Materials Physics 70(20): 205213.1-205213.7
Larbalestier, D.C.; Babcock, S.E.; Cai, X.Y.; Field, M.B.; Gao, Y.; Heinig, N.F.; Kaiser, D.L.; Merkle, K.; Williams, L.K.; Zhang, N. 1991: Electrical transport across grain boundaries in bicrystals of YBa2Cu37δ. Phys., C Supercond 185/89: 315-320
Srikanth, K.; Ashok, S. 1993: Electrical transport across oxygen-doped-silicon buried layers by substoichiometric oxygen ion implantation in silicon. Applied Physics Letters 63(23): 3188-3190
Petersno, T.L.; Szmulowicz, F.; Femenger, P.M. 1990: Electrical transport analysis of ultra-pure silicon. J. Cryst. Growth 106(1): 16-33
Guzmanafonso, C.; Torres, M.E.; Gonzalezsilgo, C.; Sabalisck, N.; Gonzalezplatas, J.; Matesanz, E.; Mujica, A. 2011: Electrical transport and anomalous structural behavior of α-Eu2(MoO4)3 at high temperature. Solid State Communications 151(22): 1654-1658
Yoshino, K.; Yun, M.S.; Ozaki, M.; Kim, S.H.; Inuishi, Y.; Kyokane, J. 1983: Electrical transport and breakdown of poly-p-phenylenesulfide. Jpn. J. Appl. Phys 22(10): 1510-1514
Schuh, L.; Metselaar, R.; De With, G. 1989: Electrical transport and defect properties of Ca- and Mg-doped yttrium aluminum garnet ceramics. Journal of Applied Physics 66(6): 2627-2632
Hayashi, S.; Ishii, G.; Yoshino, K.; Okube, J.; Moriya, T. 1984: Electrical transport and electron spin resonance in electron-beam-irradiated polyacetylene in the presence of SF6 gas. Jpn. J. Appl. Phys 23(11): 1488-1491
Frauenheim, T.; Stephan, U.; Bewilogua, K.; Jungnickel, F.; Blaudeck, P.; Fromm, E. 1989: Electrical transport and electronic properties of amorphous carbon thin films. Thin Solid Films 182(1-2): 63-78
Lin, Y.M.; Appenzeller, J.; Zhihong, C.H.E.N.; Avouris, P. 2007: Electrical transport and 1/f noise in semiconducting carbon nanotubes. Physica ( E) Low-Dimens. Syst. Nanostrut 37(1-2): 72-77
Skini, R.; Khlifi, M.; Wali, M.; Dhahri, E.; Hlil, E.K.; Lachkar, P. 2014: Electrical transport and giant magnetoresistance in La0.8―x□xCa0.2MnO3 (x=0, 0.1 and 0.2) oxides. Journal of Magnetism and Magnetic Materials 363: 217-223
Markovich, V.; Vlakhov, E.S.; Yuzhelevskii, Y.; Blagoev, B.; Nenkov, K.A.; Gorodetsky, G. 2005: Electrical transport and glassy response in strained thin La0.7Ca0.3MnO3 films. Physical Review B. Condensed Matter and Materials Physics 72(13): 134414.1-134414.8
Taichao, S.U.; Pinwen, Z.H.U.; Hongan, M.A.; Guozhong, R.E.N.; Lixue, C.H.E.N.; Weili, G.U.O.; Iami, Y.; Xiaopeng, J.I.A. 2006: Electrical transport and high thermoelectric properties of pbte doped with Bi2Te3 prepared by HPHT. Solid State Communications 138(12): 580-584
Kwang Soo, Y.O.O.; Wagner, J.B. 1994: Electrical transport and impedance spectra in NiO-Pd composites. Solid State Ionics 69(2): 107-115
Hensel, J.C.; Vandenberg, J.M.; Unterwald, F.C.; Maury, A. 1987: Electrical transport and in situ X-ray studies of the formation of TiSi2 thin films on Si. Applied Physics Letters 51(14): 1100-1102
Yuan, S.L.; Zhang, G.Q.; Peng, G.; Tu, F.; Zeng, X.Y.; Liu, J.; Yang, Y.P.; Jiang, Y.; Tang, C.Q. 2001: Electrical transport and low-field magnetoresistance in the series of mixed polycrystals (1 - m)La2/3Ca1/3MnO3 + mLa2/3Sr1/3MnO3. Journal of Physics. Condensed Matter 13(24): 5691-5697
Zi, Z.F.; Sun, Y.P.; Zhu, X.B.; Hao, C.Y.; Luo, X.; Yang, Z.R.; Dai, J.M.; Song, W.H. 2009: Electrical transport and magnetic properties in La0.7Sr0.3MnO3 and SrFe12O19 composite system. Journal of Alloys and Compounds 477(1-2): 414-419
Tchokonte, M.B.; De V du Plessis, P.; Kaczorowski, D. 2003: Electrical transport and magnetic properties of (Ce1-xGdx)Pt2Si2 (0 ≤ x ≤ 1). Journal of Physics. Condensed Matter 15(22): 3767-3777
Marcano, N.; Espeso, J.I.; Noakes, D.R.; Kalvius, G.M.; Gomez Sal, J.C. 2005: Electrical transport and magnetic properties of CeGe. Physica, B Condens. Matter 359-61: 269-271
Dewei, L.I.U.; Qiaoli, Z.H.A.N.G.; Yusheng, W.A.N.G.; Zhengcai, X.I.A. 2008: Electrical transport and magnetic properties of La2/3Ca1/3MnO3/SiO2 composites. Journal of Magnetism and Magnetic Materials 320(13): 1928-1931
Park, J.S.; Lee, Y.P.; Kang, J.H.; Kim, J.; Lee, B.W.; Rhee, J.Y. 2012: Electrical transport and magnetic properties of (La0.7Ca0.3MnO3)1―x(Y1Ba2Cu3O7―δ)x composite ceramics. Journal of Magnetism and Magnetic Materials 324(6): 1234-1238
Morales, J.; Santos, J.; Baas, J.; Wiegers, G.A.; Martinez, J.L. 1999: Electrical transport and magnetic properties of misfit layered compounds intercalated with cobaltocene. Chemistry of Materials 11(10): 2737-2742
Vertruyen, B.; Fagnard, J.F.; Vanderbemden, P.; Ausloos, M.; Rulmont, A.; Cloots, R. 2007: Electrical transport and magnetic properties of Mn3O4 -La0.7Ca0.3MnO3 ceramic composites prepared by a one-step spray-drying technique. J. Eur. Ceram. Soc 27(13-15): 3923-3926
Tang, T.; Tien, C.; Hou, B.Y. 2008: Electrical transport and magnetic properties of Nd1-xNaxMnO3 manganites. Journal of Alloys and Compounds 461(1-2): 42-47
Poddar, A.; Mukherjee, S.; De, A.; Sen, P.; Banerjee, S. 2011: Electrical Transport and Magnetic Properties of PEDOT-Ferrite Nanocomposites. Polymer Composites 32(4): 629-638
Ping, D.U.A.N.; Zhenghao, C.H.E.N.; Shouyu, D.A.I.; Lifeng, L.I.U.; Gao, J. 2006: Electrical transport and magnetic properties of perovskite-type electron-doped La-Pr-Mn-O epitaxial films. Journal of Magnetism and Magnetic Materials 301(2): 521-526
Wiegers, G.A.; Haange, R.J. 1990: Electrical transport and magnetic properties of the misfit layer compound (LaS)1.14NbS2. Journal of Physics. Condensed Matter 2(2): 455-463
Zhangming, L.V.; Keqing, R.U.A.N.; Shengli, H.U.A.N.G.; Huiyan, W.U.; Liezhao, C.A.O.; Xiaoguang, L.I. 2006: Electrical transport and magnetic properties of the ruddlesden- popper phases Sr3Fe2-xRuxO7 (0 ≤ x ≤ 1.4). Solid State Communications 140(7-8): 340-344
England, P.; Goldie, F.; Caplin, A.D. 1987: Electrical transport and magnetisation measurements on a 3D disordered superconductor-normal-metal composite - Mesures de transport électrique et d'aimantation sur un composite 3D désordonné supraconducteur-métal normal. Journal of Physics. F. Metal Physics 17(2): 447-458
Mihalik, M.; Mihalik, M.; Sechovsky, V. 2005: Electrical transport and magnetism in CeFe2Si2 single crystal. Physica, B Condens. Matter 359-61: 163-165
Hongbo, G.U.; Jiang, G.U.O.; Xingru, Y.A.N.; Huige, W.E.I.; Xi, Z.H.A.N.G.; Jiurong, L.I.U.; Yudong, H.U.A.N.G.; Suying, W.E.I.; Zhanhu, G.U.O. 2014: Electrical transport and magnetoresistance in advanced polyaniline nanostructures and nanocomposites. Polymer (Guildford) 55(17): 4405-4419
Ling, G.A.O.; Lifeng, B.A.I.; Chengshan, L.I.; Xianghong, L.I.U.; Zhanwen, W.U.; Dongning, Z.H.E.N.G.; Yafeng, L.U. 2012: Electrical transport and magnetoresistance in La2/3Ca1/3MnO3/BaZrO3 composites. Journal of Alloys and Compounds 522: 25-29
Guangming, R.E.N.; Songliu, Y.U.A.N.; Zhaoming, T.I.A.N. 2009: Electrical transport and magnetoresistance in La2/3Sr1/3MnO3 polycrystalline composite thin films. Thin Solid Films 517(13): 3748-3751
Nasri, M.; Triki, M.; Dhahri, E.; Hlil, E.K.; Lachkar, P. 2013: Electrical transport and magnetoresistance properties of (1 ― x)La0.6Sr0.4MnO3/x(Sb2O3) composites. Journal of Alloys and Compounds 576: 404-408
Lyatti, M.V.; Poppe, U.; Divin, Y.Y. 2007: Electrical transport and noise properties of [100]-tilt YBa2Cu3O7-x grain-boundary junctions with high IcRn product. Ieee Trans. Appl. Supercond 17(2): 314-317
Yakuphanoglu, F.; Kandaz, M.; Yarasir, M.N.; Senkal, F.B. 2007: Electrical transport and optical properties of an organic semiconductor based on phthalocyanine. Physica. B, Condensed Matter 393(1-2): 235-238
Gupta, K.; Jana, P.C.; Meikap, A.K. 2012: Electrical transport and optical properties of the composite of polyaniline nanorod with gold. Solid State Sciences 14(3): 324-329
Ren, Y.; Ruscher, C.H.; Haas, C.; Wiegers, G.A. 2002: Electrical transport and optical properties of the incommensurate intergrowth compounds (SbS)1.15(TiS2)n with n = 1 and 2. Journal of Physics. Condensed Matter 14(34): 8011-8023
De, S.; Dey, A.; De, S.K. 2007: Electrical transport and optical properties of vanadyl phosphate- : polyaniline nanocomposites. The Journal of Physics and Chemistry of Solids 68(1): 66-72
Meng, W.J.; Morelli, D.T.; Roessler, D.M.; Heremans, J. 1991: Electrical transport and optical properties of zirconium nitride/aluminum nitride multilayers. Journal of Applied Physics 69(2): 846-849
Majeed Khan, M.A.; Wasi Khan, M.; Husain, M.; Zulfequar, M. 2009: Electrical transport and optical properties of Zn doped Bi-Se chalcogenide glasses. Journal of Alloys and Compounds 486(1-2): 876-880
Kalanda, N.A.; Trukhan, V.M.; Marenkin, S.F. 2002: Electrical transport and phenomenological model of oxygen nonstoichiometry in YBa2Cu3O7-δ. Inorganic Materials 38(7): 694-699
Tan, X.Y.; Chen, C.L.; Jin, K.X.; Zhao, S.G.; Luo, B.C. 2008: Electrical transport and photoinduced properties in La0.7Sr0.3CrO3 thin film. Physica. B, Condensed Matter 403(21-22): 4050-4052
Madan Mithra, L.M.; Cao, Y.; Cho, S.; Sutar, D.; Lee, K.; Menon, R.; Subramanyam, S.V. 2001: Electrical transport and reflectance studies on polypyrrole - CF3SO-3 in the vicinity of metal-insulator transition. International Conference on Science and Technology of Synthetic Metals 119(1-3): 437-438
Thompson, L.R.; Collins, G.J.; Stein, H.J. 1991: Electrical transport and related properties of zone-melt-recrystallized silicon-on-insulator films. Journal of Applied Physics 69(10): 7111-7117
Bhattacharya, S.; Modak, D.K.; Pal, P.K.; Chaudhuri, B.K. 2001: Electrical transport and small polaron hopping conduction in mn-doped Bi3PbSr3Ca3Cu4-mMnmOx glasses : precursors for high temperature superconductors. Materials Chemistry and Physics 68(1-3): 239-245
Alberts, H.L.; Prinsloo, A.R.E.; Strydom, A.M. 2010: Electrical transport and specific heat of a Cr+2.2 at% Al single crystal. Joint European Magnetic Symposia 322(9-12): 1092-1094
Suthanthiraraj, S.A.; Murugesan, S.; Maruthamuthu, P. 2001: Electrical transport and structural properties of new superionic solids in the system (Cu1-xAgxI)-(Ag2O)-(B2O3), (0.05 < x < 0.25). Solid State Ionics 143(3-4): 413-423
Sadik, P.W.; Ivill, M.; Craciun, V.; Norton, D.P. 2009: Electrical transport and structural study of CuCr1-xMgxO2 delafossite thin films grown by pulsed laser deposition. Thin Solid Films 517(11): 3211-3215
Iguchi, I.; Yasuda, T. 1986: Electrical transport and superconducting properties of Pb3BiSx film compounds. Solid State Communications 60(3): 263-265
Shinozaki, B.; Omata, K.; Yamada, K.; Kawaguti, T.; Fujimori, Y.; Aomine, T. 1998: Electrical transport and superconducting properties of thin tin-copper films. Physica. C. Superconductivity 296(1-2): 49-56
Lin, J.J. 1991: Electrical transport and superconductivity in a PrBa2Cu3O7-GdBa2Cu3O7 composite system. Journal of Applied Physics 69(11): 7723-7726
Lin, J.J.; Lin, W.Y.; Tsui, R.F. 1993: Electrical transport and superconductivity in the Al2O3-Bi2Sr1.8Ca1.2Cu2Oy and MgO-Bi2Sr1.8Ca1.2Cu2Oy composites. Physica. C. Superconductivity 210(3-4): 455-462
Gang, X.I.A.O.; Rebello, N.S. 1993: Electrical transport and superconductivity in the (Y0.8Ca0.2)Ba2Cu3Oy system with variable oxygen content. Physica. C. Superconductivity 211(3-4): 433-439
Phong, P.T.; Nguyen, L.H.; Manh, D.H.; Phuc, N.X.; Lee, I.J. 2013: Electrical transport and temperature coefficient of resistance in polycrystalline La0.7-xAgxCa0.3MnO3 pellets: Analysis in terms of a phase coexistence transport model and phase separation model. Physica. B, Condensed Matter 425: 6-11
Shixun, C.A.O.; Fen, L.I.U.; Jincang, Z.H.A.N.G.; Chao, J.I.N.G.; Chuanbing, C.A.I. 2007: Electrical transport and the improvement of superconductivity by V4+ substitution in Pr1.85Ce0.15Cu0.96V0.04O4-y system. Phys., C Supercond 460-462(1): 354-355
Guang, L.I.; Yong, L.I.U.; Ngoi, B.K.A. 2006: Electrical transport and thermal properties of ferromagnetic shape memory alloy Ni49.4Mn30Ga20.6. Journal of Magnetism and Magnetic Materials 303(1): 261-265
Taichao, S.U.; Pinwen, Z.H.U.; Hongan, M.A.; Guozhong, R.E.N.; Jiangang, G.U.O.; Imai, Y.; Xiaopeng, J.I.A. 2006: Electrical transport and thermoelectric properties of PbTe doped with Sb2Te3 prepared by high-pressure and high-temperature. Journal of Alloys and Compounds 422(1-2): 328-331
Prosch, G.; Beyer, R.; Behringer, M.; Fehrer, M.; Burghardt, H.; Thomas, E.; Hommel, D.; Zahn, D.R.T. 1998: Electrical transport and trap properties in nitrogen-doped p-type MBE-grown ZnSe layers on GaAs using different contact materials. J. Cryst. Growth 184-85: 440-444
Ahmetoglu, M. 2008: Electrical transport at a isotype type II heterojunctions in the system of GaSb-GaInAsSb. Thin Solid Films 516(6): 1227-1231
Xia, Z.C.; Yuan, S.L.; Tang, C.Q.; Feng, W.; Zhang, L.J.; Zhang, G.H.; Tang, J.; Cheng, L.; Zheng, Q.H.; Liu, L.; Liu, S. 2003: Electrical transport behavior of La0.67Ca0.33MnO3/Fe3O4 composites. Solid State Communications 126(10): 567-571
Bhardwaj, C.; Kaur, D. 2014: Electrical transport behavior of lead-free 0.5Ba(Zr0.2Ti0.8)O3-0.5 (Ba0.7Ca0.3)TiO3 thin film grown on LaNiO3/Si by pulsed laser deposition. Journal of Alloys and Compounds 595: 158-163
Ramakrishna Reddy, K.T.; Jayarama Reddy, P. 1990: Electrical transport behaviour of CdS/CuGaSe2 thin film heterojunction. Materials Letters (General Ed.) 9(5-6): 227-229
Kiunke, W.; Hammerl, E.; Eisele, I.; Schulze, D.; Gobsch, G. 1992: Electrical transport between delta layers in silicon. Journal of Applied Physics 72(8): 3602-3605
Yamamoto, K.; Kamimura, T.; Matsumoto, K. 2006: Electrical transport characteristic of carbon nanotube after mass-separated ultra-low-energy oxygen ion beams irradiation. Appl. Surf. Sci 252(15): 5579-5582
Siva Pratap Reddy, M.; Ashok Kumar, A.; Rajagopal Reddy, V. 2011: Electrical transport characteristics of Ni/Pd/n-GaN Schottky barrier diodes as a function of temperature. Thin Solid Films 519(11): 3844-3850
Karatas, S.; Altindal, S.; Turut, A.; Cakar, M. 2007: Electrical transport characteristics of Sn/p-Si schottky contacts revealed from I-V-T and C-V-T measurements. Physica. B, Condensed Matter 392(1-2): 43-50
Fan, Y.; Han, J.; He, L.; Saraie, J.; Gunshor, R.L.; Hagerott, M.; Nurmikko, A.V. 1994: Electrical transport characterizations of nitrogen doped ZnSe and ZnTe films : Wide-Bandgap II-VI semiconductors for blue/green light emitters. Journal of Electronic Materials 23(3): 245-249
Peeters, F.M.; Vasilopoulos, P. 1990: Electrical transport in a quantum wire. Surf. Sci 229(1-3): 271-275
Brown, E.R.; Williams, K.; Weidong, Z.H.A.N.G.; Suen, J.Y.; Hong, L.U.; Zide, J.; Gossard, A.C. 2009: Electrical Transport in a Semimetal―Semiconductor Nanocomposite. IEEE Transactions on Nanotechnology 8(3): 402-407
Tennakone, K. 1984: Electrical transport in ammonium fluoride. The Journal of Physics and Chemistry of Solids 45(8-9): 897-898
Wronski, C.R.; Persans, P.D.; Abeles, B. 1986: Electrical transport in amorphous hydrogenated Ge/Si superlattices. Applied Physics Letters 49(10): 569-571
Hakonen, P.J.; Nunes, G. 1991: Electrical transport in bismuth whiskers at millikelvin temperatures. Journal of Physics. Condensed Matter 3(37): 7153-7160
Steinhauser, J.; Fay, S.; Oliveira, N.; Vallatsauvain, E.; Zimin, D.; Kroll, U.; Ballif, C. 2008: Electrical transport in boron-doped polycrystalline zinc oxide thin films. Physica Status Solidi. A, Applications and Materials Science 205(8): 1983-1987
Yoon, C.O.; Reghu, M.; Moses, D.; Heeger, A.J.; Cao, Y. 1994: Electrical transport in conductive blends of polyaniline in poly(methyl methacrylate). Synthetic Metals 63(1): 47-52
Stanculescu, A.; Stanculescu, F.; Socol, M.; Grigorescu, O. 2008: Electrical transport in crystalline perylene derivatives films for electronic devices. Solid State Sci 10(12): 1762-1767
Yoshino, K.; Hayashi, S.; Ishii, G.; Inuishi, Y. 1983: Electrical transport in electron beam irradiated polyacetylene. Solid State Communications 46(5): 405-408
Balberg, I. 2013: Electrical transport in ensembles of semiconductor quantum dots. Physica ( E) Low-Dimens. Syst. Nanostrut 51: 2-9
Tchmutin, I.A.; Ponomarenko, A.T.; Shevchenko, V.G.; Ryvkina, N.G.; Klason, C.; Mcqueen, D.H. 1998: Electrical transport in 0-3 epoxy resin-barium titanate-carbon black polymer composites. Journal of Polymer Science. Part B. Polymer Physics 36(11): 1847-1856
Shevchuk, V.N.; Kostishin, V.G.; Bugakova, O.E. 2000: Electrical transport in Gd2.6Ca0.4Mg0.25Zr0.65Ga4.1O12 crystals. Inorganic Materials 36(11): 1151-1155
Srivastava, V. 1999: Electrical transport in glassy systems : role of self-avoiding random-walks. Journal of Non-Crystalline Solids 253: 242-245
Hasted, J.B.; Ko, A.Y.; Albaker, Y.; Kadifachi, S.; Rosen, D. 1985: Electrical transport in haemoglobin Langmuir-Blodgett films. Journal of the Chemical Society. Faraday Transactions Ii 81(3): 463-472
Virendra, P.R.A.T.A.P.; Kanchan, G.A.U.R.; Lal, H.B. 1987: Electrical transport in heavy rare-earth molybdates. Materials Research Bulletin 22(10): 1381-1393
Dlela, Z.; Bates, C.W. 1991: Electrical transport in inhomogeneous composites. Materials Letters (General Ed.) 10(9-10): 465-469
Iguchi, E.; Ueda, K.; Nakatsugawa, H. 1998: Electrical transport in La1-xSrxCoO3 (0.03 < x ≤ 0.07) below 60 K. Journal of Physics. Condensed Matter 10(40): 8999-9013
Tiwari, A.; Raieev, K.P. 1999: Electrical transport in LaNiO3-δ (0 ≤ δ ≤ 0.14). Journal of Physics. Condensed Matter 11(16): 3291-3298
Tiwari, D.; Chaudhuri, T.K.; Shripathi, T. 2014: Electrical transport in layer-by-layer solution deposited Cu2SnS3 films: Effect of thickness and annealing temperature. Applied Surface Science 297: 158-166
Stopa, G.; Suchanicz, J.; Wcislo, D.; Konieczny, K.; Antonova, M.; Kalvane, A.; Dambekalne, M.; Sternberg, A.; Glos, T.; Jankowskasumara, I.; Smiga, W.; Dziubaniuk, M. 2009: Electrical Transport in Lead-Free [(1-x)(Na0.5Bi0.5)-xBa]Zr1-yTiyO3 Ceramics (x = 0,0.06, and y = 0,0.96). Russian-Cis-Baltic-Japanese Symposium on Ferroelectricity 378: 23-30
Meisel, L.V.; Cote, P.J. 1983: Electrical transport in low-resistivity amorphous metals - Transport électrique dans les métaux amorphes à faible résistivité. Physical Review. B, Condensed Matter 27(8): 4617-4627
Dwivedi, N.; Kumar, S.; Carey, J.D.; Malik, H.K. 2014: Electrical transport in metal-carbon hybrid multijunction devices. Diamond and Related Materials 48: 82-87
Polo, V.; Lelaurain, M.; Vangelisti, R.; Mcrae, E. 1994: Electrical transport in metal (M=Cu,Cd,Pd) chloro-aluminate intercalated graphite. Mol. Cryst. Liq. Cryst. Sci. Technol., A Mol. Cryst. Liq. Cryst 244-45: 477-482
Persat, N.; Van den Berg, H.A.M.; Dinia, A. 1999: Electrical transport in metallic thin films for giant magnetoresistance modelling purposes. J. Magn. Magn. Mater 198-99: 89-91
Holmberg, H.; Lebedeva, N.; Novikov, S.; Kuivalainen, P.; Malfait, M.; Moshchalkov, V.V. 2007: Electrical transport in Mn-doped GaAs pn-diodes. Physica Status Solidi. A, Applications and Materials Science 204(3): 791-804
Tans, S.J.; Miedema, R.; Geerligs, L.J.; Dekker, C.; Wu, J.; Wegner, G. 1997: Electrical transport in monolayers of phthalocyanine molecular wires and AFM imaging of a single wire bridging two electrode. International Conference on Science and Technology of Synthetic Metals 84(1-3): 733-734
Sunil, K.U.M.A.R.; Kashyap, S.C.; Chopra, K.L. 1992: Electrical transport in n-type bismuth modified a-Ge20Se80 and a-As2Se3 thin films. Thin Solid Films 217(1-2): 146-151
Marshall, T.; Petruzzello, J.A.; Herko, S.P.; Gaines, J.M.; Ponzoni, C.A. 1994: Electrical transport in n-type ZnMgSSe grown by molecular beam epitaxy on GaAs : Wide-Bandgap II-VI semiconductors for blue/green light emitters. Journal of Electronic Materials 23(3): 255-258
Seng, P.; Tidecks, R.; Samwer, K.; Logvenov, G.Y.U.; Oboznov, V.A. 1997: Electrical transport in Nb/Cu multilayers. Journal of low Temperature Physics 106(1-2): 29-48
Khan, Z.H.; Salah, N.A.; Habib, S.S. 2009: Electrical transport in Ni-catalysed multi-walled carbon nanotubes. International Conferece on Nanotechnology: Opportunities and Challenges 2(1-6): 138-147
Landauer, R. 1987: Electrical transport in open and closed systems. Zeitschrift für Physik. B, Condensed Matter 68(2-3): 217-228
Bratko, D.; Dolar, D.; Godec, A.; Span, J. 1983: Electrical transport in poly (styrenesulfonate) solutions with divalent counterions. die Makromolekulare Chemie. Rapid Communications 4(11): 697-701
Steinbrunn, A.; Tahri, A.; Colson, J.C. 1991: Electrical transport in polycrystalline nickel molybdate NiMoO4. International Symposium on Solid State Chemistry of Advanced Materials 49: 99-103
Ezquerra, T.A.; Kulescza, M.; Baltacalleja, F.J. 1991: Electrical transport in polyethylene-graphite composite materials. Icsm'90 [international Conference on Science and Technology of Synthetic Metals] 41(3): 915-920
Ashok, K.U.M.A.R.; Shahi, K. 1995: Electrical transport in RbCl-Al2O3 composite solid electrolytes. Journal of the Electrochemical Society 142(3): 874-879
Meaudre, M.; Meaudre, R. 1984: Electrical transport in RF-sputtered SiO2 films: a review. Journal of Non-Crystalline Solids 68(2-3): 281-299
Jung, W.H.; Nakatsugawa, H.; Iguchi, E. 1997: Electrical transport in semiconducting (LaMn1-xTix)1-γO3 (x ≤ 0.05). J. Solid State Chem. (Print) 133(2): 466-472
Sai Babu, K.; Chiranjivi, T. 1984: Electrical transport in single crystals of fluorite type alkaline earth nitrates: Sr(NO3)2, Sr(NO3)2: Na, Sr(NO3)2: Al and Ba(NO3)2: K. Solid State Ionics 13(1): 7-14
Krstic, V.; Muster, J.; Duesberg, G.S.; Philipp, G.; Burghard, M.; Roth, S. 2000: Electrical transport in single-walled carbon nanotube bundles embedded in Langmuir-Blodgett monolayers. Synthetic Metals 110(3): 245-249
Brandt, M.; Bonholzer, M.; Stolzel, M.; Benndorf, G.; Spemann, D.; Lorenz, M.; Grundmann, M. 2012: Electrical transport in strained MgxZn1-xO:P thin films grown by pulsed laser deposition on ZnO(000-1). Physica Status Solidi. B. Basic Research 249(1): 82-90
Gridin, V.V.; Datars, W.R.; Ummat, P.K. 1990: Electrical transport in superconducting BiPbSrCaCuO. Solid State Communications 74(3): 187-190
Ristic, R.; Marohnic, I.; Babic, E. 1997: Electrical transport in ternary glassy Zr2(Ni1-xMx)1 alloys. Rq 9 International Conference on Rapidly Quenched and Metastable Materials 226-228: 1060-1063
Biskup, N.; Babic, S.D.; Tomic, S. 1993: Electrical transport in the organic superconductor β-(BEDT-TTF)2AuI2 : influence of X-ray induced defects of the normal phase and superconducting ground state. Icsm'92. International Conference on Science and Technology of Synthetic Metals. Part Iv 56(2-3): 2821-2826
Babic, S.D.; Biskup, B.N.; Tomic, S.; Schweitzer, D. 1992: Electrical transport in the organic superconductor β-(BEDT-TTF)2AuI2 [with BEDT-TTF≡bis(ethylenedithio)tetrathiafulvalene] : influence of x-ray-induced defects on the normal phase and superconducting ground state. Physical Review. B, Condensed Matter 46(18): 11765-11771
Hoshikawa, A.; Terazaki, T.; Matsunaga, N.; Nomura, K.; Watanabe, M.; Nakatsuji, S.; Yamada, J. 2003: Electrical transport in the spin-density-wave phase of (TMTSF-d12)2ClO4. Synth. Met 133-34: 57-59
Aboelfotoh, M.O.; Krusinelbaum, L. 1991: Electrical transport in thin films of copper silicide. Journal of Applied Physics 70(6): 3382-3384
Zielasek, V.; Liu, H.; Shklyaev, A.A.; Rugeramigabo, E.P.; Pfniir, H. 2005: Electrical transport in ultrathin Cs layers on Si(001). Physical Review B. Condensed Matter and Materials Physics 72(11): 115422.1-115422.8
Bukowski, Z.; Gofryk, K.; Plackowski, T.; Kaczorowski, D. 2005: Electrical transport in UNi0.5Sb2 single crystals. Journal of Alloys and Compounds 400(1-2): 33-36
Dawson A Le, R.; Datars, W.R.; Garrett, J.D.; Razavi, F.S. 1989: Electrical transport in URu2Si2. Journal of Physics. Condensed Matter 1(38): 6817-6828
Ansari, T.H.; Shubha, G.U.P.T.A.; Yadava, Y.P.; Singh, R.A. 1988: Electrical transport in vanadium molybdate. Materials Chemistry and Physics 20(3): 293-298
Poddar, A.; Das, S.; Plachke, D.; Carstanjen, H.D. 2006: Electrical transport, magnetic and thermal properties of icosahedral Al-Pd-Mn quasicrystals. Journal of Magnetism and Magnetic Materials 300(2): 263-272
Hong, Y.A.N.; Ming, Z.H.A.N.G.; Hui, Y.A.N. 2009: Electrical transport, magnetic properties of the half-metallic Fe3O4-based Schottky diode. Journal of Magnetism and Magnetic Materials 321(15): 2340-2344
Shi, J.B.; Wu, F.C.; Lin, C.T. 1999: Electrical transport, magnetism, and magnetoresistance in La0.7Sr0.3(Mn1-xCox)03. Applied Physics. A, Materials Science and Processing 68(5): 577-581
Song, J.H.; Lee, J.J.; Cui, Y.; Ketterson, J.B.; Cho, S. 2005: Electrical-transport, magneto-transport and magnetic anisotropy of epitaxially grown MnAs/GaAs hybrid multilayers. J. Magn. Magn. Mater 286: 41-45
Kim, B.; Ahn, S.J.; Park, J.G.; Lee, S.H.; Park, Y.W.; Campbell, E.E.B. 2006: Electrical transport measurement of molecular device fabricated by electrochemical deposition of platinum electrode. Thin Solid Films 499(1-2): 196-200
Deferme, W.; Bogdan, A.; Bogdan, G.; Haenen, K.; De Ceuninck, W.; Nesladek, M. 2007: Electrical transport measurements and emission properties of freestanding single crystalline CVD diamond samples. Phys. Status Solidi, A Appl. Mater. Sci. (Print) 204(9): 3017-3022
Gonzalez, J.; Besson, J.M.; Weill, G. 1986: Electrical transport measurements in a gasketed diamond anvil cell up to 18 GPa. Review of Scientific Instruments 57(1): 106-107
Finkman, E.; Fisher, B. 1984: Electrical transport measurements in TiS13. Solid State Communications 50(1): 25-28
Chandra, B.; Caldwell, R.; Mingyuan, H.U.A.N.G.; Limin, H.U.A.N.G.; Sfeir, M.Y.; Obrien, S.P.; Heinz, T.F.; Hone, J. 2006: Electrical transport measurements of nanotubes with known (n, m) indices. Phys. Status Solidi, B, Basic Res 243(13): 3359-3364
Tozer, S.W.; King, H.E. 1985: Electrical-transport measurements on fragile single crystals to 7.5 GPa in the diamond anvil cell. Review of Scientific Instruments 56(2): 260-263
Nygard, J.; Cobden, D.H.; Bockrath, M.; Mceuen, P.L.; Lindelof, P.E. 1999: Electrical transport measurements on single-walled carbon nanotubes : Carbon nanotubes. Applied Physics. A, Materials Science and Processing 69(3): 297-304
Omerzu, A.; Mihailovic, D.; Biskup, N.; Milat, O.; Tomic, S. 1997: Electrical transport measurements on TDAE-C60 single crystals. International Conference on Science and Technology of Synthetic Metals 85(1-3): 1723-1724
Bharti, C.; Chanda, S.; Sinha, T.P. 2013: Electrical transport mechanism in a newly synthesized rare earth double perovskite oxide Sr2CeTaO6. Physica. B, Condensed Matter 409: 87-92
Ozdemir, O.; Anutgan, M.; Aliyevaanutgan, T.; Atilgan, I.; Katlrcioglu, B. 2009: Electrical transport mechanism in boron nitride thin film. Journal of Non-Crystalline Solids 355(14-15): 851-859
Matin, R.; Bhuiyan, A.H. 2011: Electrical transport mechanism in plasma polymerized 2, 6, diethylaniline thin films. Thin Solid Films 519(11): 3462-3467
Soliman, H.S.; Farag, A.A.M.; Khosifan, N.M.; Elnahass, M.M. 2008: Electrical transport mechanisms and photovoltaic characterization of cobalt phthalocyanine on silicon heterojunctions. Thin Solid Films 516(23): 8678-8683
Mikolasek, M.; Nemec, M.; Vojs, M.; Jakabovic, J.; Rehacek, V.; Dong, Z.H.A.N.G.; Zeman, M.; Harmatha, L. 2014: Electrical transport mechanisms in amorphous/crystalline silicon heterojunction: Impact of passivation layer thickness. Thin Solid Films 558: 315-319
Baqiah, H.; Ibrahim, N.B.; Abdi, M.H.; Halim, S.A. 2013: Electrical transport, microstructure and optical properties of Cr-doped In2O3 thin film prepared by sol―gel method. Journal of Alloys and Compounds 575: 198-206
Walker, A.B.; Kambili, A.; Martin, S.J. 2002: Electrical transport modelling in organic electroluminescent devices. Journal of Physics. Condensed Matter 14(42): 9825-9876
Ragel, F.C.; Du Plessis, P.D.V.; Strydom, A.M. 2007: Electrical transport of Ce(Pt1-xNix)Ga and CePt(Ga1-yAly) alloys. J. Magn. Magn. Mater 310(2): 365-367
Fritz, I.J.; Drummond, T.J.; Osbourn, G.C.; Schirber, J.E.; Jones, E.D. 1986: Electrical transport of holes in GaAS/InGaAs/GaAs single strained quantum wells. Applied Physics Letters 48(24): 1678-1680
Underweiser, M.; Orbach, R.; Adams, S.; Dunn, B. 1991: Electrical transport of mixed (Na+,Ba2+)β-alumina. Physical Review. B, Condensed Matter 43(14): 11999-12003
Pourcelly, G.; Lingheimer, A.; Gavach, C.; Hurwitz, H.D. 1991: Electrical transport of sulphuric acid in nafion perfluorosulphonic membranes. Journal of Electroanalytical Chemistry and Interfacial Electrochemistry 305(1): 97-113
Lee, W.P.; Choi, E.S.; Ovchinnikov, A.A.; Park, Y.W.; Liou, K.K.; Kim, D.W.; Chung, K.H. 1993: Electrical transport of the pyrolyzed materials, polyacenic and polyacrylonitrile. Icsm'92 : International Conference on Science and Technology of Synthetic Metals. Part Vi 57(2-3): 5069-5074
Phong, P.T.; Khiem, N.V.; Dai, N.V.; Manh, D.H.; Hong, L.V.; Phuc, N.X. 2009: Electrical transport of (1―x)La0.7Ca0.3MnO3+xAl2O3 composites. Journal of Magnetism and Magnetic Materials 321(19): 3330-3334
Savvides, N.; Window, B. 1988: Electrical transport, optical properties, and structure of TiN films synthesized by low-energy ion assisted deposition. Journal of Applied Physics 64(1): 225-234
Ellmer, K.; Vollweiler, G. 2006: Electrical transport parameters of heavily-doped zinc oxide and zinc magnesium oxide single and multilayer films heteroepitaxially grown on oxide single crystals. Toeo-4 International Symposium on Transparent Oxide Thin Films for Electronics and Optics 496(1): 104-111
Takita, H.; Murayama, S.; Hoshi, K.; Li, X.; De Boer, F.R.; Obi, Y. 1995: Electrical transport phenomena in amorphous (Hf, Ta)Fe2 alloys. J. Magn. Magn. Mater 140-44(1): 307-308
Ma, B.; Balachandran, U.; Park, J.H.; Segre, C.U. 1996: Electrical transport properties and defect structure of SrFeCo0.5Ox. Journal of the Electrochemical Society 143(5): 1736-1744
Ohtaki, M.; Koga, H.; Tokunaga, T.; Eguchi, K.; Arai, H. 1995: Electrical transport properties and high-temperature thermoelectric performance of (Ca0.9M0.1)MnO3 (M = Y, La, Ce, Sm, In, Sn, Sb, Pb, Bi). Journal of Solid State Chemistry 120(1): 105-111
Xiong, Y.H.; Bao, X.C.; Zeng, Y.; Cui, Y.F.; Xiong, C.S.; Zhang, J.; Sun, C.L.; Huang, W.H.; Li, X.S.; Ji, Q.J.; Cheng, X.W.; Peng, Z.H.; Lin, N. 2007: Electrical transport properties and magnetoresistance of (La0.7Ca0.3MnO3)1-x/(MgO)x composites. Physica. B, Condensed Matter 398(1): 102-106
Kutty, T.R.N.; Philip, J. 2000: Electrical transport properties and magnetoresistance of LaMn1-xMxO3+δ substituted with diamagnetic ions (M = Li, Mg, Ti). Journal of Physics. Condensed Matter 12(35): 7747-7758
Subramanyam, G.; Kapoor, V.J.; Chorey, C.M.; Bhasin, K.B. 1992: Electrical-transport properties and microwave device performance of sputtered TlCaBaCuO superconducting thin films. Journal of Applied Physics 72(6): 2396-2403
Geny, J.F.; Marchal, G.; Mangin, P.; Janot, C.; Piecuch, M. 1982: Electrical transport properties and phase stability of amorphous CuxSn1-x alloys - Propriétés de transport électrique et stabilité de phases des alliages amorphes CuxSn1-x. Philosophical Magazine. B. Physics of Condensed Matter. Electronic, Optical and Magnetic Properties 46(5): 515-521
Krier, A.; Mao, Y. 1995: Electrical transport properties and photoluminescence of lattice-matched InAs0.91Sb0.09 on GaSb grown by liquid-phase epitaxy. Semiconductor Science and Technology 10(7): 930-936
Fan, Z.W.; Li, P.; Zhang, L.T.; Mi, W.B.; Jiang, E.Y.; Bai, H.L. 2012: Electrical transport properties and room-temperature positive magnetoresistance of Fe3O4/a-C/n-Si junctions. Thin Solid Films 520(9): 3641-3646
Saito, T.; Tezuka, N.; Sugimoto, S. 2011: Electrical Transport Properties and Spin Injection in Co2FeAl0.5Si0.5/GaAs Junctions. Ieee Trans. Magn 47(10): 2447-2450
Chudnovskii, F.A.; Kikalov, D.O.; Pergament, A.L.; Stefanovich, G.B. 1999: Electrical transport properties and switching in vanadium anodic oxides : Effect of laser irradiation. Physica Status Solidi. A. Applied Research 172(2): 391-395
Dangelo, P.; Barra, M.; Cassinese, A.; Maglione, M.G.; Vacca, P.; Minarini, C.; Rubino, A. 2007: Electrical transport properties characterization of PVK (poly N-vinyl carbazole) for electroluminescent devices applications. Solid-State Electronics 51(1): 123-129
Aprilesi, G.; Mazzega, E.; Michelini, M.; Nava, F.; Queeirolo, G.; Meda, L. 1986: Electrical transport properties in Co-silicides formed by thin-film reactions. Journal of Applied Physics 60(1): 310-317
Moon, K.J.; Choi, J.H.; Lee, T.I.; Ham, M.H.; Maeng, W.J.; Hwang, I.; Kim, H.; Myoung, J.M. 2010: Electrical transport properties in electroless-etched Si nanowire field-effect transistors. Microelectronic Engineering 87(11): 2407-2410
Duboz, J.Y.; Badoz, P.A.; Rosencher, E.; Henz, J.; Ospelt, M.; Von Kanel, H.; Briggs, A. 1988: Electrical transport properties in epitaxial codeposited CoSi2 layers on 111 Si. Applied Physics Letters 53(9): 788-790
Murthy, S.S.N.; Maruska, H.P.; Forster, E.O.; Enard, J.H. 1989: Electrical transport properties in heavy hydrocarbon fluids. IEEE Transactions on Electrical Insulation 24(4): 717-720
Iguchi, E.; Nakamura, N.; Aoki, A. 1998: Electrical transport properties in LiMn2O4. Philosophical Magazine. B. Physics of Condensed Matter. Statistical Mechanics, Electronic, Optical and Magnetic Properties 78(1): 65-77
Cao, X.W.; Fang, J.; Li, K.B. 2000: Electrical transport properties in magnetoresistive La0.67Ca0.33MnO3 thin film. Solid State Communications 115(4): 201-205
Pomoni, K.; Krontiras, C. 1988: Electrical transport properties in nickel monosilicide thin films. Journal of Physics. D, Applied Physics 21(5): 780-783
Iguchi, E.; Nakamura, N.; Aoki, A. 1997: Electrical transport properties in semiconducting BaPbxBi1-xO3 using complex-plane impedance analyses. The Journal of Physics and Chemistry of Solids 58(5): 755-763
Kuriyama, K.; Volin, K.J.; Brun, T.O.; Susman, S. 1986: Electrical-transport properties in the semimetallic compound LiGa - Propriétés de transport électrique dans le composé semimétallique LiGa. Physical Review. B, Condensed Matter 33(10): 7291-7293
Badot, J.C.; Binet, L.; Baffier, N.; Morineau, R.; Fourrierlamer, A. 1992: Electrical transport properties in vanadium bronzes obtained by the sol-gel process. Solid State Ionics. International Conference 53-56: 343-350
Sanchezherencia, A.J.; Moreno, R.; Jurado, J.R. 2000: Electrical transport properties in zirconia/alumina functionally graded materials. Journal of the European Ceramic Society 20(10): 1611-1620
Tange, M.; Yoshizaki, R. 2008: Electrical transport properties influenced by surface barriers in a high-Tc superconducting strip. Phys., C Supercond 468(15-20): 1274-1277
Yong, T.I.A.N.; Qi Ming, Z.H.A.N.G.; Zhi Qing, L.I. 2011: Electrical transport properties of Ag3Sn compound. Solid State Communications 151(20): 1496-1499
Honda, Y.; Edagawa, K.; Takeuchi, S.; Anpang, T.S.A.I.; Inoue, A. 1995: Electrical transport properties of Al-Cu-Os icosahedral quasicrystal. Jpn. J. Appl. Phys 34(5A): 2415-2417
Xin Dian, L.I.U.; Jing, L.I.U.; Si, C.H.E.N.; Zhi Qing, L.I. 2012: Electrical transport properties of Al-doped ZnO films. Applied Surface Science 263: 486-490
Wang, X.C.; Chen, X.M.; Yang, B.H. 2010: Electrical transport properties of amorphous CNx/p-Si heterostructures. Physica Status Solidi. A, Applications and Materials Science 207(1): 170-174
Mehra, R.M.; Manoj, H.R.O.R.A.; Mathur, P.C.; Henant, K.U.M.A.R. 1987: Electrical transport properties of as evaporated and annealed amorphous GexSe1-x thin films. Materials Chemistry and Physics 17(4): 343-356
Amaral, L.; Nedellec, P.; Traverse, A.; Bernas, H.; Dumoulin, L.; Burger, J.P. 1986: Electrical transport properties of Bi3Ni under helium irradiation and hydrogen implantation - Propriétés de transport électrique de Bi3Ni sous irradiation d'hélium et implantation d'hydrogène. Journal of Physics. F. Metal Physics 16(9): 1239-1246
Boon, L.; Metselaar, R. 1990: Electrical transport properties of β-bismuth molybdate Bi2Mo2O9. European Journal of Solid State and Inorganic Chemistry 27(3): 381-389
Mehra, R.M.; Hemant, K.U.M.A.R.; Surinder, S.O.U.L.; Pawan, S.I.K.K.A. 1984: Electrical transport properties of bulk amorphous GexSex-x. Materials Chemistry and Physics 11(5): 481-494
Ravinder, D. 2000: Electrical transport properties of cadmium substituted copper ferrites. Materials Letters (General Ed.) 43(3): 129-138
Metselaar, R.; Hoefsloot, A.M. 1987: Electrical transport properties of calcium and barium aluminates. Solid State Ionics 24(4): 305-314
Kobayashi, K.; Yamaguchi, S.; Iguchi, Y. 1998: Electrical transport properties of calcium zirconate at high temperature. Solid State Ion 108(1-4): 355-362
Waechter, D.; Leith, G.; Zukotynski, S. 1991: Electrical transport properties of CdSe thin-film transistors with Cr contacts. Canadian Semiconductor Technology Conference Organizers Comments 5 (Ottawa on 1990-08) 69(3-4): 229-235
Pratap, K.J.; Nagabhushanam, M.; Balaramaiah, A.; Hari Babu, V. 1987: Electrical transport properties of CdTe:Sb films. Crystal Research and Technology (1979) 22(10): 1285-1288
Valentini, T.; Armentano, I.; Santilli, P.; Kenny, J.M.; Lozzi, L.; Santucci, S. 2003: Electrical transport properties of conjugated polymer onto self-assembled aligned carbon nanotubes. Diamond and Related Materials 12(9): 1524-1531
Mulay, V.N.; Bhupal Reddy, K.; Devender Reddy, V.; Venugopal Reddy, P. 1992: Electrical transport properties of copper substituted magnesium aluminium ferrites. Phys. Status Solidi, A, Appl. Res 130(2): 397-406
Bingzhong, L.I.; Liu, P.; Jiang, G.B.; Huang, W.N.; Lu, X.; Aitken, R.G.; Daneshvar, K.; Puzerewski, M.; Singco, G. 1991: Electrical transport properties of CoSi2 and Co(SixGe1-x)2 films formed by different methods. Journal of Applied Physics 70(10): 5427-5432
Hensel, J.C.; Tung, R.T.; Poate, J.M.; Unterwald, F.C. 1984: Electrical transport properties of CoSi2 and NiSi2 thin films. Applied Physics Letters 44(9): 913-915
Yadav, R.B. 1983: Electrical transport properties of CoWO4 - Elektrische Transporteigenschaften von CoWO4. The Journal of Physics and Chemistry of Solids 44(7): 697-698
Prinsloo, A.R.E.; Alberts, H.L.; Smit, P. 1998: Electrical transport properties of Cr-Si and Cr-Ga alloy single crystals. Journal of Physics. Condensed Matter 10(12): 2715-2725
Chaudhry, M.I. 1991: Electrical transport properties of crystalline silicon carbide/silicon heterojunctions. IEEE Electron Device Letters 12(12): 670-672
Campos, M. 2003: Electrical transport properties of doped poly (p-phenylene). Polymers and Polymer Composites 11(5): 407-414
Nirmala, R.; Sankaranarayanan, V.; Sethupathi, K.; Morozkin, A.V.; Yamamoto, Y.; Hori, H. 2006: Electrical transport properties of Dy0.5Gd4.5Si2Ge2. Physica. B, Condensed Matter 373(1): 120-123
Prasad, M.; Pandit, A.K.; Ansari, T.H.; Singh, R.A.; Wanklyn, B.M. 1989: Electrical transport properties of EuVO4 single crystal. Physics Letters. a (1-2): 61-64
Zhao, L.D.; Berardan, D.; Dragoe, N. 2010: Electrical transport properties of F-doped LaFeAsO oxypnictide. Journal of Alloys and Compounds 508(2): 606-609
Lee, D.S.; Chern, G. 2012: Electrical transport properties of Fe3-xCrxO4 ferrite films on MgO (0 0 1) grown by molecular beam epitaxy. Physica. B, Condensed Matter 407(3): 297-301
Lee, D.S.; Chern, G. 2008: Electrical transport properties of Fe3-xMgxO4 ferrite films on MgO (001) and SrTiO3 (001) grown by molecular beam epitaxy. Solid State Communications 148(7-8): 353-356
Jiong, Y.A.N.G.; Xi, L.; Zhang, W.; Chen, L.D.; Jihui, Y.A.N.G. 2009: Electrical Transport Properties of Filled CoSb3 Skutterudites: A Theoretical Study. J. Electron. Mater 38(7): 1397-1401
Schwartz, K.B.; Duba, A.G. 1985: Electrical transport properties of gadolinium scandium gallium garnet. The Journal of Physics and Chemistry of Solids 46(8): 957-962
Purushotham, Y.; Pran, K.I.S.H.A.N.; Kitendar, K.U.M.A.R.; Venogupal Reddy, P. 1995: Electrical transport properties of germanium-substituted lithium ferrites. Materials Letters (General Ed.) 22(1): 47-54
Guang, L.I.; Huang, D.B.; Jin, S.W.; Ma, Y.Q.; Li, X.G. 2010: Electrical transport properties of heteroepitaxial p―n junction of charge-ordered La7/16Ca9/16MnO3 and 0.5 wt% Nb doped SrTiO3. Solid State Communications 150(37-38): 1737-1740
Golub, M.; Graja, A.; Brau, A.; Farges, J.P. 2002: Electrical transport properties of highly conducting charge-transfer organic composites formed by BEDT-TTF and gold iodides. Synthetic Metals 125(3): 301-306
Cheong, M.G.; Kim, K.S.; Namgung, N.W.; Han, M.S.; Yang, G.M.; Hong, C.H.; Suh, E.K.; Lim, K.Y.; Lee, H.J.; Yoshikawa, A. 2000: Electrical transport properties of highly Mg-doped GaN epilayers grown by MOCVD. J. Cryst. Growth 221: 734-738
Singh, T.B.; Hernandezsosa, G.; Neugebauer, H.; Andreev, A.; Sitter, H.; Sariciftci, N.S. 2006: Electrical transport properties of hot wall epitaxially grown para-sexiphenyl nano-needles. Phys. Status Solidi, B, Basic Res 243(13): 3329-3332
Zima, V.; Vlcek, M.; Benes, L.; Casciola, M.; Massinelli, L.; Palombari, R. 1996: Electrical-transport properties of hydrated and anhydrous vanadyl phosphate in the temperature range 20-200 °C. Chemistry of Materials 8(10): 2505-2509
Look, D.C. 1997: Electrical transport properties of III-nitrides. European Materials Research Society 1997 Spring Meeting, Symposium L: Iii-V Nitrides Semiconductors and Ceramics: from Material Growth to Device Applications 50(1-3): 50-56
Julien, C.; Hatzikraniotis, E.; Kambas, K. 1986: Electrical transport properties of impurity-doped In2Se3. Physica Status Solidi. A. Applied Research 97(2): 579-585
Das, A.; Meikap, A.K.; De, S.K.; Chatterjee, S. 1993: Electrical transport properties of In/Ni/In sandwich films at low temperature. Solid State Communications 88(6): 481-485
Julien, C.; Eddrief, M.; Balkanski, M.; Hatzikraniotis, E.; Kambas, K. 1985: Electrical transport properties of In2Se3. Physica Status Solidi. A. Applied Research 88(2): 687-695
Terashima, T.; Kojima, N. 1994: Electrical transport properties of incommensurate layer compounds (RES)xNbS2 (RE=Rare-earth metals;x=1,2,0.6). Journal of the Physical Society of Japan 63(2): 658-673
Sarkar, A.; Ghosh, P.; Meikap, A.K.; Chattopadhyay, S.K.; Chatterjee, S.K.; Chowdhury, P.; Roy, K.; Saha, B. 2008: Electrical-Transport Properties of Iodine-Doped Conducting Polyaniline. Journal of Applied Polymer Science 108(4): 2312-2320
Singh, R.S.; Ansari, T.H.; Singh, R.A.; Wanklyn, B.M.; Watt, B.E. 1995: Electrical transport properties of iron(III) titanate. Solid State Communications 94(12): 1003-1007
Iwamoto, M.; Kubota, T.; Nakagawa, M.; Sekine, M. 1990: Electrical transport properties of Josephson junctions using polyimide Langmuir-Blogett films. Jpn. J. Appl. Phys 29(1): 116-119
Kubota, T.; Wada, M.; Iwamoto, M.; Noshiro, H.; Sekine, M. 1992: Electrical transport properties of Josephson junctions with a Nb/Au/PI/(Pb-Bi) structure. Thin Solid Films 210-11(1-2): 277-279
Lin, Y.H.; Yong, L.I.U.; Zhang, B.P.; Nan, C.W.; Li, J.F.; Zhijian, S.H.E.N. 2007: Electrical Transport Properties of La2CuO4 Ceramics Processed by the Spark Plasma Sintering. Journal of the American Ceramic Society 90(12): 4005-4008
Lekshmi, I.C.; Gayen, A.; Hegde, M.S. 2005: Electrical transport properties of LaNi1-xMxO3 (M = Co, Mn) thin films fabricated by pulsed laser deposition. Journal of Physics. Condensed Matter 17(41): 6445-6458
Suchanicz, J.; Stopa, G.; Pytel, K.; Konieczny, K.; Finder, A.; Antonova, M.; Sternberg, A. 2011: Electrical Transport Properties of Lead-Free (Na0.5Bi0.5)1-xBaxZr0.04Ti0.96O3 Ceramics (x = 0.06, 0.085, 0.1). Lup-1 Lithuanian-Ukrainian-Polish Meeting on Ferroelectrics Physics 418: 106-115
Paramesh, G.; Vaish, R.; Varma, K.B.R. 2011: Electrical transport properties of 0.5Li2O-0.5M2O-2B2O3 (M = Li, Na and K) glasses. Journal of Non-Crystalline Solids 357(5): 1479-1484
Ram, M. 2009: Electrical transport properties of LiNiVO4 ceramics. Solid State Communications 149(29-30): 1226-1230
Pandit, A.K.; Singh, R.S.; Wanklyn, B.M.; Singh, R.A. 1991: Electrical transport properties of LuVO4 single crystal. Materials Chemistry and Physics 30(2): 121-126
Prasad, M.; Pandit, A.K.; Ansari, T.H.; Singh, R.A. 1991: Electrical transport properties of manganese selenide. Materials Chemistry and Physics 30(1): 13-17
Ammar, A.H. 1996: Electrical transport properties of manganese thin films. Physica. B, Condensed Matter 225(1-2): 132-136
Granja, L.; Hueso, L.E.; Quintero, M.; Levy, P.; Mathur, N.D. 2007: Electrical transport properties of metal/La0.70 Ca0.30MnO3 interfaces. Physica, B Condens. Matter 398(2): 235-237
Liu, F.; Zhu, M.; Feng, Y.; Han, Y.; Liu, J. 2001: Electrical transport properties of microcrystalline silicon thin films prepared by Cat-CVD. Thin Solid Films 395(1-2): 97-100
Duverger, E.; Jannot, B.; Maglione, M.; Jannin, M. 1994: Electrical transport properties of Mn- and Ni-doped barium titanate at high temperature. Solid State Ionics 73(1-2): 139-145
Berardan, D.; Pinsardgaudart, L.; Dragoe, N. 2009: Electrical transport properties of Mn-doped LaFeAsO oxypnictide. Journal of Alloys and Compounds 481(1-2): 470-472
Cagnolati, R.; Campani, E.; Lucchesi, M.; Rolla, P.; Ruggeri, G.; Spila, E.; Ciardelli, F. 1993: Electrical transport properties of molecular composites derived from the oxidation of poly(n-vinylpyrrole). Ecme 92 : European Conference on Molecular Electronics 234-236: 745-752
Ghosh, A. 1990: Electrical transport properties of molybdenum tellurite glassy semiconductors. Philosophical Magazine. B. Physics of Condensed Matter. Electronic, Optical and Magnetic Properties 61(1): 87-96
Auriel, C.; Meerschaut, A.; Deudon, C.; Wiegers, G.A.; Baas, J.; Chen, J.; Monceau, P. 1995: Electrical transport properties of mono- and bilayers misfit compounds (MX)1+x(TX2)m, M = Sn, Pb - T = Ti, Nb - X = S, Se. European Journal of Solid State and Inorganic Chemistry 32(9): 947-962
Schmidbauer, E.; Schanz, U.; Yu, F.J. 1991: Electrical transport properties of mono- and polycrystalline FeWO4. Journal of Physics. Condensed Matter 3(28): 5341-5352
Ghatak, S.; Sinha, M.; Meikap, A.K.; Pradhan, S.K. 2008: Electrical transport properties of nanocrystalline zinc ferrite. Physica. E, Low-Dimentional Systems and Nanostructures 40(8): 2686-2693
Pomoni, K.; Krontiras, C.; Salmi, J. 1990: Electrical transport properties of NbSi2 thin films. Journal of Physics. D, Applied Physics 23(3): 354-357
Kazim, S.; Ali, V.; Zulfequar, M.; Mazharul Haq, M.; Husain, M. 2007: Electrical transport properties of poly[2 -methoxy -5-(2' -ethyl hexyloxy)-1,4-phenylene vinylene] thin films doped with acridine orange dye. Physica. B, Condensed Matter 393(1-2): 310-315
Garciacuenca, M.V.; Manchon, M.; Varela, M.; Lousa, A.; Morenza, J.L. 1988: Electrical transport properties of polycrystalline CuInSe2 films. Solar Energy Materials 17(5): 347-355
Kumari, A.; Prasad, N.; Bhatnagar, P.K.; Mathur, P.C.; Yadav, A.K.; Tomy, C.V.; Bhatia, C.S. 2014: Electrical transport properties of polycrystalline CVD graphene on SiO2/Si substrate. Diamond and Related Materials 45: 28-33
Shubha, G.U.P.T.A.; Yadava, Y.P.; Singh, R.A. 1989: Electrical transport properties of polycrystalline nickel vanadate. Zeitschrift für Physik. B, Condensed Matter 74(2): 221-226
Martil, I.; Gonzalezdiaz, G.; Sanchezquesada, F. 1984: Electrical transport properties of polycrystalline rf sputtered CdS thin films. Journal of Vacuum Science and Technology. A. Vacuum, Surfaces, and Films 2(4): 1491-1494
Ansari, T.H.; Singh, R.A. 1993: Electrical transport properties of polycrystalline titanium molybdate. Materials Chemistry and Physics 34(3-4): 285-289
Azam, S.; Reshak, A.H. 2014: Electrical transport properties of potassium germanide tungstates (K10Ge18WO4): A theoretical study. Solid State Sciences 32: 26-34
Desai, P.; Patel, D.D.; Jani, A.R. 2014: Electrical transport properties of semiconducting chromium molybdenum diselenide single crystals. Materials Science in Semiconductor Processing 24: 40-43
Chang, C.Y.; Chi, G.C.; Wang, W.M.; Chen, L.C.; Chen, K.H.; Ren, F.; Pearton, S.J. 2006: Electrical transport properties of single GaN and InN nanowires. Journal of Electronic Materials 35(4): 738-743
Gil, L.K.; Baca, E.; Moran, O.; Quinayas, C.; Bolanos, G. 2008: Electrical transport properties of sintered granular manganite/insulator systems. Solid State Communications 145(1-2): 66-71
Kuznetsov, V.L.; Kuznetsova, L.A.; Rowe, D.M. 2001: Electrical transport properties of SnBi4Te7 and PbBi4Te7 with different deviations from stoichiometry. Journal of Physics. D, Applied Physics 34(5): 700-703
Kale, B.G.; Bichile, G.K. 1990: Electrical transport properties of solid electrolyte-Li2SO4. Indian Journal of Pure and Applied Physics 28(10): 610-612
Purushotham, Y.; Chandel, J.S.; Sud, S.P.; Babbar, V.K.; Venkat Reddy, K.; Venugopal Reddy, P. 1995: Electrical transport properties of some substituted nickel ferrites. Materials Science and Engineering. B, Solid-State Materials for Advanced Technology 34(1): 67-73
Anlage, S.M.; Johnson, W.L.; Cotts, E.J.; Follstaedt, D.M.; Knapp, J.A. 1988: Electrical transport properties of the aluminum-ruthenium icosahedral phase - Propriétés du transport électrique de la phase icosaédrique aluminium-ruthénium. Physical Review. B, Condensed Matter 38(11): 7802-7805
Chakraborty, G.; Gupta, K.; Rana, D.; Ajit Kumar, M.E.I.K.A.P. 2012: Electrical Transport Properties of the Composite of Multiwall Carbon Nanotube-Polypyrrole-Polyvinyl Alcohol Below Room Temperature. Polymer Composites 33(3): 343-352
Bretonnet, J.L.; Auchet, J.; Gasser, J.G. 1990: Electrical transport properties of the liquid Al-Cu alloys - Propriétés de transport électrique des alliages liquides Al-Cu. International Conference on Liquid and Amorphous Metals 7 117-118: 395-398
Park, E.B.; Shim, J.W.; Park, H.; Park, Y.W.; Lee, K.B.; Kim, H.S.; Iqbal, Z.; Baughman, R.H. 1991: Electrical transport properties of the potassium doped bulk fullerene, KxC60. Phys., C Supercond 185/89: 409-410
Hong, Q.; Wang, J.H. 1993: Electrical transport properties of the rare-earth ion substituted (Tl,Ps)Sr1.6Ba0.4(Ca0.8R0.2)Cu2Ox superconducting system. Physica. C. Superconductivity 214(3-4): 286-290
Palstra, T.T.M.; Nieuwenhuys, G.J.; Mydosh, J.A.; Buschow, K.H.J. 1986: Electrical transport properties of the ternary compounds UTSn, UTSb and ThTSn - Propriétés électriques de transport des composés ternaires UTSn, UTSb et ThTSn. Journal of Magnetism and Magnetic Materials 54-57: 549-550
Elnahass, M.M.; Farid, A.M.; Attia, A.A.; Ali, H.A.M. 2006: Electrical transport properties of thermally evaporated phthalocyanine (H2Pc) thin films. Applied Surface Science 252(20): 7553-7561
Meikap, A.K.; Das, A.; Chatterjee, S. 1993: Electrical transport properties of thin cadmium films at low temperatures. Journal of low Temperature Physics 90(3-4): 281-304
Rachford, F.J.; Rubinstein, M.; Prinz, G.A. 1988: Electrical transport properties of thin epitaxially grown iron films on GaAs - Propriétés du transport électrique de couches minces de fer obtenues par croissance épitaxique sur GaAs. Annual Conference on Magnetism and Magnetic Materials (Chicago 1987) 63(8): 4291-4293
Rubinstein, M.; Rachford, F.J.; Fuller, W.W.; Prinz, G.A. 1988: Electrical transport properties of thin epitaxially grown iron films - Propriétés de transport électrique de couches minces de fer obtenues par épitaxie. Physical Review. B, Condensed Matter 37(15): 8689-8700
Khan, Z.H.; Zulfequar, M.; Manzar Malik, M.; Husain, M. 1997: Electrical transport properties of thin films of a-Se80-xGa20Bix. Materials Science and Technology 13(6): 484-488
Xia, Y.; Ponnambalam, V.; Bhattacharya, S.; Pope, A.L.; Poon, S.J.; Tritt, T.M. 2001: Electrical transport properties of TiCoSb half-Heusler phases that exhibit high resistivity. Journal of Physics. Condensed Matter 13(1): 77-89
Nava, F.; Tu, K.N.; Mazzega, E.; Michelini, M.; Queirolo, G. 1987: Electrical transport properties of transition-metal disilicide films. Journal of Applied Physics 61(3): 1085-1093
Li, B.Z.; Aitken, R.G. 1985: Electrical transport properties of tungsten silcide thin films. Applied Physics Letters 46(4): 401-403
Kaczorowski, D.; Schoenes, J. 1990: Electrical transport properties of UCuAs2 single crystals. Solid State Communications 74(3): 143-146
Nava, F.; Bisi, O.; Tu, K.N. 1986: Electrical transport properties of V3Si, V5Si3, and VSi2 thin films - Propriétés de transport électrique de couches minces de V3Si, V5Si3 et VSi2. Physical Review. B, Condensed Matter 34(9): 6143-6150
Girish, C.H.A.N.D.R.A.; Radha, S.; Nigam, A.K.; Prasad, S.; Shringi, S.N.; Krishnan, R. 1990: Electrical transport properties of vanadium substituted Fe-B-SI metallic glasses. J. Magn. Magn. Mater 83(1-3): 354-356
Takamura, M.; Mukaida, M.; Watanabe, K.; Fujiyoshi, T.; Teranishi, R.; Yamada, K.; Mori, N.; Horii, S.; Ichinose, A.; Kita, R.; Kato, S.; Matsumoto, K.; Yoshida, Y.; Namba, M.; Awaji, S. 2008: Electrical transport properties of Y123 films with 2-D apcs. Phys., C Supercond 468(15-20): 1851-1853
Paracchini, C. 1990: Electrical transport properties of YBa2Cu3Ox films. Solid State Communications 74(10): 1113-1116
Sreedhara Reddy, P.; Raghupathi Chetty, G.; Uthanna, S.; Srinivasudu Naidu, B.; Jayarama Reddy, P. 1991: Electrical transport properties of zinc oxide films deposited by chemical spray method. Materials Letters (General Ed.) 11(3-4): 142-144
Ramana Reddy, A.V.; Mohan, G.R.; Boyanov, B.S.; Ravinder, D. 1999: Electrical transport properties of zinc-substituted cobalt ferrites. Materials Letters (General Ed.) 39(3): 153-165
Ravinder, D.; Ramana Reddy, A.V. 1999: Electrical transport properties of zinc-substituted manganese ferrites. Materials Letters (General Ed.) 38(4): 265-269
Jae Young, P.A.R.K.; Kim, J.J.; Sang Sub, K.I.M. 2013: Electrical transport properties of ZnO nanofibers. Microelectronic Engineering 101: 8-11
Uddin, I.; Rafat, M.; Tripathi, K.; Husain, M.; Khan, S.A.; Abdallah Elhamidy, S.M.; Khan, Z.H. 2009: Electrical transport properties of ZnO nanostructures. International Conferece on Nanotechnology: Opportunities and Challenges 2(1-6): 81-88
Pomoni, K.; Salmi, J. 1991: Electrical transport properties of ZrSi2 thin films. Journal of Physics. D, Applied Physics 24(5): 727-730
Alshahrani, A.; Eldesoky, M.M. 2006: Electrical transport studies in alkali iron phosphate glasses. Journal of Materials Science. Materials in Electronics 17(1): 43-49
Eldesoky, M.M.; Hassaan, M.Y. 2002: Electrical transport studies in barium borovanadate glasses. Physics and Chemistry of Glasses 43(1): 1-6
Kim, S.K.; Kang, T.W.; Chung, C.K.; Hong, C.Y.; Kim, T.W. 1995: Electrical transport studies in disordered GaAs/AlAs superlattices. Thin Solid Films 257(1): 94-97
Bera, S.K.; Chaudhuri, S.; Gupta, R.P.; Pal, A.K. 2001: Electrical transport studies in nanocrystalline CdSe/SiO2composite films. Thin Solid Films 382(1-2): 86-94
Magudapathy, P.; Gangopadhyay, P.; Panigrahi, B.K.; Nair, K.G.M.; Dhara, S. 2001: Electrical transport studies of Ag nanoclusters embedded in glass matrix. Physica. B, Condensed Matter 299(1-2): 142-146
Lal, H.B.; Srivastava, O.P. 1983: Electrical transport studies of copper mercuric iodide. Physica Status Solidi. A. Applied Research 77(1): 405-412
Toth, J.; Bakonyi, I.; Lovas, A.; Tompa, K. 1989: Electrical transport studies of glassy Zr-Ni hydrides. Journal of the Less-Common Metals 155(2): 185-191
Awana, V.P.S.; Agarwal, S.K.; Das, M.P.; Narlikar, A.V. 1992: Electrical transport studies of the La2-xSrxCuO4 system near the metal-insulator-semiconductor transition and the effect of Zn doping on localization. Journal of Physics. Condensed Matter 4(21): 4971-4980
Kanchan, D.K.; Padmasree, K.P.; Panchal, H.R.; Kulkarni, A.R. 2004: Electrical transport studies on CdI2 doped silver oxysalt system. Amec: Asian Meeting on Electroceramics 30(7): 1655-1660
Brems, S.; Buntinx, D.; Volodin, A.; Van Haesendonck, C. 2005: Electrical transport study of exchange bias in patterned CO/CoO bilayers. Jems'04: Joint European Magnetic Symposia 290-291: 1138-1141
Rahman Bakaul, S.; Kebin, L.I.; Guchang, H.A.N.; Yihong, W.U. 2008: Electrical Transport Study of Patterned Lateral Niobium-Permalloy Junctions. Ieee Trans. Magn 44(11): 2737-2740
Zekentes, K.; Georgakilas, A.; Lagadas, M.; Michelakis, K.; Christou, A.; Mercy, J.M.; Konczewicz, L.; Robert, J.L. 1992: Electrical transport study of pseudomorphic heterostructures InGaAs-InAlAs on Si and InP substrates. Sens. Actuators, A Phys 33(1-2): 67-70
Kumar, A.; Singh, F.; Kumar, R.; Tripathi, A.; Avasthi, D.K.; Pivin, J.C. 2006: Electrical transport study of structural phase transitions in C60 films and the effect of swift heavy ion irradiation. Solid State Communications 138(9): 448-451
Hettinger, J.D.; Lofland, S.E.; Finkel, P.; Meehan, T.; Palma, J.; Harrell, K.; Gupta, S.; Ganguly, A.; Elraghy, T.; Barsoum, M.W. 2005: Electrical transport, thermal transport, and elastic properties of M2AlC (M=Ti, Cr, Nb, and V). Physical Review B. Condensed Matter and Materials Physics 72(11): 115120.1-115120.6
Oneill, K.; Slot, E.; Thorne, R.; Van der Zant, H. 2005: Electrical transport through constrictions in the charge-density wave conductor NbSe3. J. Phys., Iv 131: 221-222
Hwang, J.S.; Lee, G.S.; Kong, K.J.; Ahn, D.J.; Hwang, S.W.; Ahn, D. 2002: Electrical transport through poly(G)-poly(C) DNA molecules. Microelectron. Eng 63(1-3): 161-165
Beom Joon, K.I.M.; Yu, H.; Joon Hak, O.H.; Moon Sung, K.A.N.G.; Jeong Ho, C.H.O. 2013: Electrical Transport through Single Nanowires of Dialkyl Perylene Diimide. Journal of Physical Chemistry. C 117(20): 10743-10749
Rogge, S.; Dunn, A.W.; Melin, T.; Dekker, C.; Geerligs, L.J. 2000: Electrical transport through ultrathin ordered K3C60 films on Si. Carbon (New York) 38(11-12): 1647-1651
Iguchi, E.; Hashimoto, T.; Yokoyama, S. 1996: Electrical transports and stability of small polarons of O 2p holes in LixCo1-xO. Journal of the Physical Society of Japan 65(1): 221-229
Iguchi, E.; Woo Hwan, J.U.N.G. 1994: Electrical transports of LaFe1-xTixO3 (x≤0.10). Journal of the Physical Society of Japan 63(8): 3078-3086
Leclercq, J.; Denjoy, I.; Leenhardt, A.; Coumel, P. 1992: Electrical treatment of tachycardias. Developments in Cardiovascular Medicine 129: 191-207
Sirohi, U.S.; Koegel, R.G.; Straub, R.J. 1985: Electrical treatments to increase forage drying rates. Transactions of the ASAE 28(3): 706-710
Shimizu, N.; Uchida, K.; Rasikawan, S. 1992: Electrical tree and deteriorated region in polyethylene. Ieee Trans. Electr. Insul 27(3): 513-518
Shuvalov, M.Y. 1997: Electrical-tree initiation as the development of microsource explosive instability. Russian Electrical Engineering 68(12): 12-22
Cho, Y.S.; Shim, M.J.; Kim, S.W. 1998: Electrical tree initiation mechanism of artificial defects filled XLPE. Materials Chemistry and Physics 56(1): 87-90
Bozzo, R.; Guastavino, F.; Montanari, G.C. 1998: Electrical tree tests : Probabilistic inference and insulating material evaluation. IEEE Transactions on Dielectrics and Electrical Insulation 5(5): 734-740
Poznansky, O.; Novikov, V. 1999: Electrical treeing in composite materials. Journal of Polymer Engineering 19(4): 223-231
Das, S.; Lahiri, S.K. 1994: Electrical trimming of ion-beam-sputtered polysilicon resistors by high current pulses. Ieee Trans. Electron Devices 41(8): 1429-1434
Martinet, E.; Luc, F.; Rosencher, E.; Bois, P.; Delaitre, S. 1992: Electrical tunability of infrared detectors using compositionally asymmetric GaAs/AlGaAs multiquantum wells. Applied Physics Letters 60(7): 895-897
Min, W.A.N.G.; Chenggang, H.U.; Mingbo, P.U.; Cheng, H.U.A.N.G.; Xiaoliang, M.A.; Xiangang, L.U.O. 2012: Electrical tunable L-band absorbing material for two polarisations. Electronics Letters 48(16): 1002-1003
Qianyin, X.I.A.N.G.; Quanyuan, F.E.N.G.; Xiaoguo, H.U.A.N.G.; Dinghong, J.I.A. 2013: Electrical Tunable Microstrip LC Bandpass Filters With Constant Bandwidth. Iee Radio Frequency Integrated Circuits 61(3): 1124-1130
Wooldridge, I.; Turner, C.W.; Warburton, P.A.; Romans, E.J. 1999: Electrical tuning of passive HTS microwave devices using single crystal strontium titanate. Ieee Trans. Appl. Supercond 9(2): 3220-3223
Reyes, J.A.; Reyesavendano, J.A.; Halevi, P. 2008: Electrical tuning of photonic crystals infilled with liquid crystals. Optics Communications 281(9): 2535-2547
Fattah, I.H.A.; Wang, S. 1983: Electrical tuning of semiconductor interferometric laser. Electronics Letters 19(22): 926-927
Hong, H.U.A.N.G.; Liuchen, C.H.A.N.G. 1999: Electrical two-speed propulsion by motor winding switching and its control strategies for electric vehicles. IEEE Transactions on Vehicular Technology 48(2): 607-618
Hyuga, F.; Kohda, H.; Nakanishi, H.; Kobayashi, T.; Hoshikawa, K. 1985: Electrical uniformity for Si-implanted layer of completely dislocation-free and striation-free GaAs. Applied Physics Letters 47(6): 620-622
Taylor, B.N. 1985: Electrical units, fundamental constants, and the 1983 least squares adjustment. IEEE Transactions on Instrumentation and Measurement 34(2): 135-162
Sudhakara Reddy, B. 1995: Electrical vs solar water heater: a case study. Energy Conversion and Management 36(11): 1097-1106
Enning, B. 2006: Electrical waveguide in Mach-Zehnder modulator integrated into ring resonator for optical signal processing. Electronics Letters 42(1): 49-50
Shenping, L.I.; Chan, K.T.; Hao, D.I.N.G.; Zujie, F.A.N.G. 1998: Electrical wavelength switching of ultrashort pulses in a mode-locked Er-doped fiber ring laser with fiber gratings. Fiber and Integrated Optics 17(2): 113-118
Belyaev, V.L.; Kuklev, Y.V. 2002: Electrical wear of contacts in low-voltage, high-current equipment. Russian Electrical Engineering 73(2): 11-14
Clark, R.N.; Vosper, F.C. 1985: Electrical wind-assisted water pumping. Journal of Solar Energy Engineering 107(1): 97-101
Vostiar, I.; Ferapontova, E.E.; Gorton, L. 2004: Electrical wiring of viable Gluconobacter oxydans cells with a flexible osmium-redox polyelectrolyte. Electrochemistry Communications 6(7): 621-626
Lahtinen, T.H.E.; Tuomi, J.O.; Van Dijken, S. 2011: Electrical Writing of Magnetic Domain Patterns in Ferromagnetic/ Ferroelectric Heterostructures. Ieee Trans. Magn 47(10): 3768-3771
Lilja, J.; Toivonen, M.; Hovinen, M.; Laiho, R.; Pessa, M. 1990: Electricall, optical, and structural properties of Ga-DOPED ZnSe grown by molecular beam epitaxy. Materials Letters (General Ed.) 9(10): 396-400
Tang, L. 1996: Electrically accelerated methods for determining chloride diffusivity in concrete-current development - Méthodes par accélération électrique pour déterminer la diffusivité des chlorures dans le béton. Magazine of Concrete Research 48(176): 173-179
Jerman, H. 1994: electrically-activated, normally-closed diaphragm valves. Journal of Micromechanics and Microengineering 4(4): 210-216
Do Hoon, K.I.M.; Jun Uk, P.A.R.K.; Kyung Hyun, A.H.N.; Seung Jong, L.E.E. 2003: Electrically activated poly(propylene)/clay nanocomposites. Macromolecular Rapid Communications 24(5-6): 388-391
Gesheva, K.A.; Ivanova, T.; Hamelmann, F. 2006: Electrically activated thin film optical coatings as functional layers in electrochromic devices. Solar cells and Solar Energy Materials Symposium-Imrc 2005 90(15): 2532-2541
Shmagin, V.B.; Andreev, B.A.; Morozova, E.N.; Krasilnik, Z.F.; Kryzhkov, D.I.; Kuznetsov, V.P.; Uskova, E.A.; Ammerlaan, C.A.J.; Pensl, G. 2001: Electrically active centers in light emitting Si:Er/Si structures grown by the sublimation MBE method. Physica, B Condens. Matter 308-10: 361-364
Justo, J.F.; Assali, L.V.C. 2001: Electrically active centers in partial dislocations in semiconductors. Physica, B Condens. Matter 308-10: 489-492
Leppert, K.D.; Petersen, W.A.; Cecil, D.J. 2013: Electrically Active Convection in Tropical Easterly Waves and Implications for Tropical Cyclogenesis in the Atlantic and East Pacific. Monthly Weather Review 141(2): 542-556
Polyakov, V.I.; Rukovishnikov, A.I.; Garin, B.M.; Avdeeva, L.A.; Heidinger, R.; Parshin, V.V.; Ralchenko, V.G. 2005: Electrically active defects, conductivity, and millimeter wave dielectric loss in CVD diamonds. Diamond 2004, European Conference on Diamond, Diamond-Like Materials, Carbon Nanotubes, Nitrides and Silicon Carbide 14(3-7): 604-607
Seghier, D.; Gislason, H.P. 2001: Electrically active defects in AlGaN alloys grown by metalorganic chemical vapor deposition. Physica, B Condens. Matter 308-10: 130-133
Muret, P.; Kumar, A.; Volpe, P.N.; Wade, M.; Pernot, J.; Magaud, L.; Mer, C.; Bergonzo, P. 2009: Electrically active defects in boron doped diamond homoepitaxial layers studied from deep level transient spectroscopies and other techniques. Phys. Status Solidi, A Appl. Mater. Sci. (Print) 206(9): 2016-2021
Panchenko, T.V.; Snezhnoi, G.V.; Tybulewicz, A. 1993: Electrically active defects in crystals of Bi12SiO20 undoped and doped with Al and Ga ions. Physics of the Solid State 35(11): 1446-1450
Ayres, J.R.; Brotherton, S.D. 1992: Electrically active defects in deep preamorphized single-crystal silicon layers. Journal of Applied Physics 71(6): 2702-2709
Chibani, L.; Hageali, M.; Siffert, P. 1996: Electrically active defects in detector-grade CdTe:Cl and CdZnTe materials grown by THM and HPBM. J. Cryst. Growth 161(1-4): 153-158
Umanamembreno, G.A.; Parish, G.; Fichtenbaum, N.; Keller, S.; Mishra, U.K.; Nener, B.D. 2008: Electrically Active Defects in GaN Layers Grown With and Without Fe-doped Buffers by Metal-organic Chemical Vapor Deposition. Journal of Electronic Materials 37(5): 569-572
Brotherton, S.D.; Ayres, J.R.; Clegg, J.B.; Gowers, J.P. 1989: Electrically active defects in shallow pre-amorphised p+ n junctions in silicon. Journal of Electronic Materials 18(2): 173-184
Markevich, V.P.; Bernardini, S.; Hawkins, I.D.; Peaker, A.R.; Kolkovsky, V.; Larsen, A.N.; Dobaczewski, L. 2008: Electrically active defects induced by hydrogen and helium implantations in Ge. European Mrs 2008 Spring Meeting. Symposium on beyond Silicon Technology: Materials and Devices for Post-Si Cmos 11(5-6): 354-359
Markevich, V.P.; Peaker, A.R.; Capan, I.; Lastovskii, S.B.; Dobaczewski, L.; Emtsev, V.V.; Abrosimov, N.V. 2007: Electrically active defects induced by irradiations with electrons, neutrons and ions in Ge-rich SiGe alloys. Physica, B Condens. Matter 401-02: 184-187
Leppert, K.D.; Petersen, W.A. 2010: Electrically Active Hot Towers in African Easterly Waves prior to Tropical Cyclogenesis. Monthly Weather Review 138(3): 663-687
Markevich, V.P.; Dobaczewski, L.; Nielsen, K.B.; Litvinov, V.V.; Petukh, A.N.; Pokotilo, Y.M.; Abrosimov, N.V.; Peaker, A.R. 2008: Electrically active hydrogen-implantation-induced defects in Ge crystals and SiGe alloys. Thin Solid Films 517(1): 419-421
Djara, V.; Oregan, T.P.; Cherkaoui, K.; Schmidt, M.; Monaghan, S.; Oconnor, E.; Povey, I.M.; Oconnell, D.; Pemble, M.E.; Hurley, P.K. 2013: Electrically active interface defects in the In0.53Ga0.47As MOS system. Microelectronic Engineering 109: 182-188
Greuter, F. 1995: Electrically active interfaces in ZnO varistors. Solid State Ion 75: 67-78
Liefting, J.R.; Schreutelkamp, R.J.; Vanhellemont, J.; Vandervorst, W.; Maex, K.; Custer, J.S.; Saris, F.W. 1993: Electrically active, ion implanted boron at the solubility limit in silicon. Applied Physics Letters 63(8): 1134-1136
Hirai, T. 2007: Electrically active non-ionic artificial muscle. J. Intell. Mater. Syst. Struct 18(2): 117-122
Krick, D.T.; Lenahan, P.M.; Kanicki, J. 1988: Electrically active point defects in amorphous silicon nitride: an illumination and charge injection study. Journal of Applied Physics 64(7): 3558-3563
Galler, N.; Ditlbacher, H.; Steinberger, B.; Hohenau, A.; Dansachmuller, M.; Camachogonzales, F.; Bauer, S.; Krenn, J.R.; Leitner, A.; Aussenegg, F.R. 2006: Electrically actuated elastomers for electro-optical modulators. Applied Physics. B, Lasers and Optics 85(1): 7-10
Mee Whi, K.I.M.; Rastegar, A.; Olenik, I.D.; De Witte, P.; Mahn Won, K.I.M.; Rasing, T. 1999: Electrically aligned photo-polymer films for liquid crystal alignment. Mol. Cryst. Liq. Cryst. Sci. Technol., A Mol. Cryst. Liq. Cryst 329: 441-446
Bryant, M.D.; Yune, Y.G. 1989: Electrically and frictionally derived mound temperatures in carbon graphite brushes. IEEE Holm Conference Electrical Contacts. Meeting 34 (San Francisco 1988) 12(2): 229-236
Vasilenko, N.A.; Groznov, M.A.; Mokshin, V.M.; Mylnikov, V.S.; Topol, S.S.; Trukhtanov, V.A.; Shvets, V.V.; Soms, L.N.; Anderson, J.R.X. 1991: Electrically and optically controlled modulator based on dispersed nematic liquid crystals. Soviet Physics. Technical Physics 36(4): 418-421
Kurihara, S.; Masumoto, K.; Nonaka, T. 1999: Electrically and photochemically induced light scattering behavior of anisotropic polymer/liquid crystal composite films. Kobunshi Ronbunshu (Tokyo) 56(4): 247-253
Araby, S.; Qingshi, M.E.N.G.; Liqun, Z.H.A.N.G.; Hailan, K.A.N.G.; Majewsk, P.; Youhong, T.A.N.G.; Jun, M.A. 2014: Electrically and thermally conductive elastomer/graphene nanocomposites by solution mixing. Polymer (Guildford) 55(1): 201-210
King, J.A.; Tucker, K.W.; Vogt, B.D.; Weber, E.H.; Congling, Q.U.A.N. 1999: Electrically and thermally conductive nylon 6,6. Polymer Composites 20(5): 643-654
Krupa, I.; Novak, I.; Chodak, I. 2004: Electrically and thermally conductive polyethylene/graphite composites and their mechanical properties. Synthetic Metals 145(2-3): 245-252
Zhang, B.Y.; Wang, J.H.; Xu, X.Y.; Xi, M. 2010: Electrically and Thermally Modulated Optical Properties of Polymer Dispersed Chiral Liquid Crystal. Polymer Composites 31(9): 1535-1540
Spirkova, M.; Stejskal, J.; Quadrat, O. 1999: Electrically anisotropic polyaniline-polyurethane composites. International Conference on Science and Technology of Synthetic Metals 102(1-3): 1264-1265
Kammler, H.K.; Pratsinis, S.E. 2000: Electrically-assisted flame aerosol synthesis of fumed silica at high production rates. Chemical Engineering and Processing 39(3): 219-227
Ghazanfari, E.; Amatya Shrestha, R.; Miroshnik, A.; Pamukcu, S. 2012: Electrically assisted liquid hydrocarbon transport in porous media. Electrochim. Acta 86: 185-191
Bailes, P.J. 1992: Electrically augmented settlers and coalescers for solvent extraction. Ernest Peters International Symposium on Hydrometallurgy, Theory and Practice. Part B / Metallurgical Society of the Cim. Annual Hydrometallurgical Meeting (22 ) 30(1-3): 417-430
Kim, K.; Yen, H.J.; Ko, Y.G.; Chang, C.W.; Kwon, W.; Liou, G.S.; Ree, M. 2012: Electrically bistable digital memory behaviors of thin films of polyimides based on conjugated bis(triphenylamine) derivatives. Polymer (Guildford) 53(19): 4135-4144
Zhengchun, L.I.U.; Fengliang, X.U.E.; Yi, S.U.; Varahramyan, K. 2006: Electrically bistable memory device based on spin-coated molecular complex thin film. IEEE Electron Device Letters 27(3): 151-153
Suk Gyu, H.A.H.M.; Choi, S.; Kim, O.; Ree, M.; Hong, S.H.; Taek Joon, L.E.E.; Park, S.; Dong Min, K.I.M.; Jin Chul, K.I.M.; Kwon, W.; Kim, K.; Kim, M.J. 2009: Electrically bistable nonvolatile switching devices fabricated with a high performance polyimide bearing diphenylcarbamyl moieties. Journal of Material Chemistry 19(15): 2207-2214
Song, Y.; Ling, Q.D.; Lim, S.L.; Teo, E.Y.H.; Tan, Y.P.; Li, L.; Kang, E.T.; Chan, D.S.H.; Chunxiang, Z.H.U. 2007: Electrically bistable thin-film device based on PVK and GNPs polymer material. IEEE Electron Device Letters 28(2): 107-110
Shao, X.I.U.M.E.I.; Ding, J.I.E.Y.I.N.G.; Yu, Y.U.E.H.U.A.; Fang, J.I.A.X.I.O.N.G. 2007: Electrically calibrated pyroelectric detector for high-accuracy calibration of UV radiation. Proc. Spie Int. Soc. Opt. Eng: 68341E.1-68341E.9
Liu, S.; Dykstra, C.E. 1987: Electrically caused vibrational frequency shifts and dipole moments in rare gas hydrogen bonded complexes. Chemical Physics Letters 136(1): 22-25
Kunduri, H.K.; Lucietti, J. 2005: Electrically charged dilatonic black rings. Physics Letters. Section B 609(1-2): 143-149
Komitov, L. 2003: Electrically commanded surfaces: A new liquid-crystal-display concept. J. Soc. Inf. Disp 11(3): 437-441
Varesano, A.; Antognozzi, B.; Tonin, C. 2010: Electrically conducting-adhesive coating on polyamide fabrics. Synthetic Metals 160(15-16): 1683-1687
Yamamoto, T. 1992: Electrically conducting and thermally stable π-conjugated poly(arylenes)s prepared by organometallic processes. Progress in Polymer Science 17(6): 1153-1205
Partridge, J.G.; Mackenzie, D.M.A.; Reichel, R.; Brown, S.A. 2006: Electrically conducting Bi cluster-assembled wires formed using SiN nanostencils. Mne 2005 International Conference on Micro- and Nano-Engineering 83(4-9): 1460-1463
Boutry, C.M.; Gerberhorler, I.; Hierold, C. 2013: Electrically Conducting Biodegradable Polymer Composites (Polylactide-Polypyrrole and Polycaprolactone-Polypyrrole) for Passive Resonant Circuits. Polymer Engineering and Science 53(6): 1196-1208
Jenekhe, S.A.; Wellinghoff, S.T.; Zhi, D.E.N.G. 1985: Electrically conducting complexes of poly(3,6-N-methylcarbazolyl methylene). Synthetic Metals 10(4): 281-292
Bjorklund, R.B.; Liedberg, B. 1986: Electrically conducting composites of colloidal polypyrrole and methylcellulose. Journal of the Chemical Society. Chemical Communications (16): 1293-1295
Levon, K.; Kinanen, A.; Lindberg, J.J. 1986: Electrically conducting compound synthesized from lignin and sulfur. Polymer Bulletin (Berlin. Print) 16(5): 433-439
Inoue, M.; Inoue, M.B. 1988: Electrically conducting coordination compounds. Reviews in Inorganic Chemistry (London, England) 9(2-3): 219-257
Qibing, P.E.I.; Inganas, O.; Osterholm, J.E.; Laakso, J. 1993: Electrically conducting copolymers from 3-octylthiophene and 3-methylthiophene. Polymer (Guildford) 34(2): 247-252
Deger, S.; Hanack, M. 1986: Electrically conducting μ-(1,4-diisocyanobenzene)-2,3-naphthalocyaninatoiron(II). Synthetic Metals 13(4): 319-324
Kang, M.; Jin, H.J. 2007: Electrically conducting electrospun silk membranes fabricated by adsorption of carbon nanotubes. Colloid and Polymer Science 285(10): 1163-1167
Romanko, W.R.; Mchatton, P.A.; Marcy, H.O.; Kannewurf, C.R.; Marks, T.J.; Carr, S.H. 1991: Electrically conducting fibers made from rigid rod polymers. Icsm'90 [international Conference on Science and Technology of Synthetic Metals] 41(3): 947-950
Gonzalez, I.; Vecino, M.; Munoz, M.E.; Santumaria, A.; Pomposo, J.A. 2004: Electrically conducting gels formed from polyaniline/ ethylcellulose/m-cresol ternary solutions. Macromolecular Chemistry and Physics 205(10): 1379-1384
Mehrotra, V.; Keddie, J.L.; Miller, J.M.; Giannelis, E.P. 1991: Electrically conducting glasses : incorporation of polypyrrole in a porous SiO2 matrix. Journal of Non-Crystalline Solids 136(1-2): 97-102
Valiavalappil, S.; Harinipriya, S. 2012: Electrically conducting nylon 6,6―polyaniline short composite fibres synthesised by the solvent coagulation method. Synthetic Metals 162(23): 2027-2032
Dai, Z.R.; Son, S.Y.; Kim, B.S.; Choi, D.K.; Ohuchi, F.S. 1999: Electrically conducting oxide thin films of (Sr, Ca)RuO3 and structural compatibility with (Ba, Sr)TiO3. Materials Research Bulletin 34(6): 933-942
Cox, B.; Wong, Y.M.; Hoang, T. 1995: Electrically conducting paths in thick (>10 μm) zirconia films. Journal of Nuclear Materials 223(2): 202-209
Della Mea, G.; Rigato, V.; Dal Maschio, R.; Sighel, C.; Colombo, P. 1993: Electrically conducting PbyOx-SiO2 glass films deposited by reactive radio-frequency magnetron sputtering. Journal of the American Ceramic Society 76(11): 2930-2932
Yun Heum, P.A.R.K.; Seung Han, C.H.A.N.G.; Jun Young, L.E.E.; Lee, Y.; Doo Hyun, B.A.I.K. 2000: Electrically conducting poly(acrylonitrile-co-pyrrolylmethylstyrene)-G-polypyrrole. Mol. Cryst. Liq. Cryst. Sci. Technol., A Mol. Cryst. Liq. Cryst 349: 355-358
Galer, J.M.; Hudson, M.J. 1994: Electrically conducting poly(acrylonitrile) films. Solid State Ionics 69(1): 21-27
Taniki, Y.; Nakao, Y.; Kaeriyama, K. 1993: Electrically conducting poly[dialkoxy-bis(2-thienyl)silane]. Icsm '92 : International Conference on Science and Technology of Synthetic Metals. Part Ii 55(2-3): 1596-1602
Ng, S.C.; Fu, P.; Yu, W.L.; Chan, H.S.O.; Tan, K.L. 1997: Electrically conducting poly [3-ω-hydroxyalkyl thiophenes]. Synthetic Metals 87(2): 119-122
Kowalik, J.; Tolbert, L.M.; Narayan, S.; Abhiraman, A.S. 2001: Electrically conducting poly(undecylbithiophene)s. 1. Regioselective synthesis and primary structure. Macromolecules 34(16): 5471-5479
Wintersgill, M.C.; Fontanella, J.J.; Calame, J.P.; Greenbaum, S.G.; Andeen, C.G. 1984: Electrically conducting poly(vinyl acetate). Journal of the Electrochemical Society 131(9): 2208-2209
Roy, R.; Bhattacharyya, A.; Sen, S.K.; Sen, S. 1998: Electrically conducting polyaniline and polyaniline/polycarbonate composite films : Preparation, characterization and electrical conductivity measurements. Phys. Status Solidi, A, Appl. Res 165(1): 245-253
Hopkins, A.R.; Lipeles, R.A.; Kao, W.H. 2004: Electrically conducting polyaniline microtube blends. International Conference on Metallurgical Coatings and Thin Films 447-448: 474-480
Castilloorteea, M.M.; Del Castillocastro, T.; Encinas, J.C.; Pereztello, M.; De Paoli, M.A.; Olayo, R. 2003: Electrically conducting polyaniline-PBMA composite films obtained by extrusion. Journal of Applied Polymer Science 89(1): 179-183
Hailin, H.U.; Cadenas, J.L.; Saniger, J.M.; Nair, P.K. 1998: Electrically conducting polyaniline-poly(acrylic acid) blends. Polymer International 45(3): 262-270
Zinger, B.; Kijel, D. 1991: Electrically conducting polyethylene/polypyrrole films. Icsm'90 [international Conference on Science and Technology of Synthetic Metals] 41(3): 1013-1023
Venkatachalam, S.; Prabhakaran, P.V. 1993: Electrically conducting polymer based on polymeric phthalocyanine containing polyimide units. European Polymer Journal 29(5): 711-714
Machado, J.M.; Karasz, F.E.; Lenz, R.W. 1988: Electrically conducting polymer blends. Polymer (Guildford) 29(8): 1412-1417
Choi, D.U.; Song, K.; Young Chul, K.I.M.; Yun Heum, P.A.R.K.; Jun Young, L.E.E. 2001: Electrically conducting polymer blends with thermally processable polyaniline. Mol. Cryst. Liq. Cryst. Sci. Technol., A Mol. Cryst. Liq. Cryst 370: 399-402
Waltman, R.J.; Bargon, J. 1986: Electrically conducting polymers: a review of the electropolymerization reaction, of the effects of chemical structure on polymer film propeties, and of applications towards technology. Canadian Journal of Chemistry 64(1): 76-95
Gourley, K.D.; Lillya, C.P.; Reynolds, J.R.; Chien, J.C.W. 1984: Electrically conducting polymers: AsF5-doped poly(phenylenevinylene) and its analogues. Macromolecules 17(5): 1025-1033
Reynolds, J.R.; Ruiz, J.P.; Child, A.D.; Nayak, L.; Marynick, D.S. 1991: Electrically conducting polymers containing alternating substituted phenyle and bithiophene repeats units. Macromolecules 24(3): 678-687
Ruiz, J.P.; Child, A.D.; Nayak, K.; Marynick, D.S.; Reynolds, J.R. 1991: Electrically conducting polymers containing substituted phenylene and heterocycle repeat units. Icsm'90 [international Conference on Science and Technology of Synthetic Metals] 41(3): 783-788
Walton, T.R.; Griffith, J.R.; Reardon, J.P. 1985: Electrically conducting polymers from conjugated bis-phthalonitrile monomers. Journal of Applied Polymer Science 30(7): 2921-2939
Atanasov, A.; Koleva, D. 2006: Electrically-conducting polyolefin composites containing disperse and fibre materials as conductive secondary phases. Polymers and Polymer Composites 14(2): 195-202
Osazuwa, O.; Kontopoulou, M.; Peng, X.I.A.N.G.; Zhibin, Y.E.; Docoslis, A. 2014: Electrically conducting polyolefin composites containing electric field-aligned multiwall carbon nanotube structures: The effects of process parameters and filler loading. Carbon (New York) 72: 89-99
Valeriocardenas, C.; Romouribe, A.; Cruzsilva, R. 2011: Electrically Conducting Polypropylene/Polyaniline-grafted-Short Glass Fiber Composites: Microstructure and Dynamic Mechanical Analysis. Polymer Engineering and Science 51(2): 254-263
Tae Su, K.A.N.G.; Soong Wook, L.E.E.; Joo, J.; Jun Young, L.E.E. 2005: Electrically conducting polypyrrole fibers spun by electrospinning. Icsm 04 International Conference on Science and Technology of Synthetic Metals 153(1-3): 61-64
Rajapakse, R.M.G.; Rajapakse, R.M.M.Y.; Bandara, H.M.N.; Karunarathne, B.S.B. 2008: Electrically conducting polypyrrole-fuller's earth nanocomposites : Their preparation and characterisation. Electrochimica Acta 53(6): 2946-2952
Lin, L.I.; Chung, D.D.L. 1991: Electrically conducting powder filled polyimidesiloxane. Composites 22(3): 211-218
Caffrey, P.O.; Gupta, M.C. 2014: Electrically conducting superhydrophobic microtextured carbon nanotube nanocomposite. Applied Surface Science 314: 40-45
Aoki, K.; Kawaguchi, F.; Nishiumi, T.; Jingyuan, C.H.E.N. 2008: Electrically conducting suspensions formed by polyaniline : Electrochemistry of Electroactive Materials. Electrochimica Acta 53(11): 3798-3802
Humphrey, D.G.; Fallon, G.D.; Murray, K.S. 1988: Electrically conducting TCNQ derivatives of copper sulphur/nitrogen chelates - structure of a novel semiconducting complex [Cu(pdto)(TCNQ)]2 which contains N-bonded TCNQ (pdto = 1,8-di-2-pyridyl-3,6-dithiaoctane - TCNQ = 7,7,8,8-tetracyanoquinodimethane). Journal of the Chemical Society. Chemical Communications (20): 1356-1358
Yamamoto, T.; Kubota, E. 1989: Electrically conducting, thermally stable and mechanically strong Cu5-poly(parabanic acid) composite films and their shielding effect of electromagnetic wave. Colloid and Polymer Science 267(6): 546-549
Basheer, R.A.; Jodeh, S. 2001: Electrically conducting thin films obtained by ion implantation in pyrolyzed polyacrylonitrile. Materials Research Innovations 4(2-3): 131-134
Punkka, E.; Laakso, K.; Stubb, H.; Levon, K.; Zheng, W.Y. 1994: Electrically conducting thin films of aniline derivatives. Thin Solid Films 243(1-2): 515-520
Bartus, J. 1991: Electrically conducting thiophene polymers. J. Macromol. Sci., Chem 28(9): 917-924
Venkatachalam, S.; Rao, K.V.C.; Manoharan, P.T. 1989: Electrically conducting three-dimensional (octacyano phthalocyaninato polysiloxane) polymer. Polymer (Guildford) 30(9): 1633-1638
Kakuchi, M.; Hikita, M.; Sugita, A.; Onose, K.; Tamamura, T. 1986: Electrically conducting two-layer resist system using amorphous carbon films. Journal of the Electrochemical Society 133(8): 1755-1756
Kyu Dong, K.I.M.; Chung, D.D.L. 2005: Electrically conductive adhesive and soldered joints under compression. Journal of Adhesion Science and Technology 19(11): 1003-1023
Yi, Z.H.A.N.G.; Shuhua, Q.I.; Xinming, W.U.; Guochen, D.U.A.N. 2011: Electrically conductive adhesive based on acrylate resin filled with silver plating graphite nanosheet. Synthetic Metals 161(5-6): 516-522
Guanglei, W.U.; Kaichang, K.O.U.; Ning, L.I.; Hailin, S.H.I.; Min, C.H.A.O. 2013: Electrically Conductive Adhesive Based on Bismaleimide-Triazine Resin Filled with Microcoiled Carbon Fibers. Journal of Applied Polymer Science 128(2): 1164-1169
Jagt, J.C.; Beris, P.J.M.; Lijten, G.F.C.M. 1995: Electrically conductive adhesives: a prospective alternative for SMD soldering?. Ieee Trans. Compon. Packag. Manuf. Technol. Part B Adv. Packag 18(2): 292-298
Matienzo, L.J.; Das, R.N.; Egitto, F.D. 2008: Electrically Conductive Adhesives for Electronic Packaging and Assembly Applications. Journal of Adhesion Science and Technology 22(8-9): 853-869
Antamaria, A.; Munoz, M.E.; Fernandez, M.; Landa, M. 2013: Electrically Conductive Adhesives with a Focus on Adhesives that Contain Carbon Nanotubes. Journal of Applied Polymer Science 129(4): 1643-1652
Show, Y. 2007: Electrically conductive amorphous carbon coating on metal bipolar plates for PEFC. Surf. Coat. Technol 202(4-7): 1252-1255
Ng, S.C.; Xu, J.M.; Chan, H.S.O. 1998: Electrically conductive and fluorescent poly [1,4-bis(3-alkyl-2-thienyl)phenylenes]: syntheses and preliminary characterization aspects. Synthetic Metals 92(1): 33-37
Kulhankova, L.; Tokarsky, J.; Matejka, V.; Peikertova, P.; Vallova, S.; Mamulova Kutlakova, K.; Styskala, V.; Capkova, P. 2014: Electrically conductive and optically transparent polyaniline/ montmorillonite nanocomposite thin films. Thin Solid Films 562: 319-325
Dasari, A.; Yu, Z.Z.; Mai, Y.W. 2009: Electrically conductive and super-tough polyamide-based nanocomposites. Polymer (Guildford) 50(16): 4112-4121
Yuling, M.A.; Darning, W.U.; Ying, L.I.U.; Xiaofeng, L.I.; Hui, Q.I.A.O.; Yu, Z.Z. 2014: Electrically conductive and super-tough polypropylene/carbon nanotube nanocomposites prepared by melt compounding. Composites. Part B, Engineering 56: 384-391
Zhang, G.P.; Bi, X.T. 1991: Electrically conductive blocked copolymer of polyaniline and poly(p-phenylene-terephthalamide). Icsm' 90 [international Conference on Science and Technology of Synthetic Metals] 41(1-2): 251-254
Bissell, R.A.; Boden, N.; Brown, S.J.; Bushby, R.J. 1999: Electrically conductive calamitic and discotic liquid crystals based on tetrathiafulvalene (TTF). Mol. Cryst. Liq. Cryst. Sci. Technol., A Mol. Cryst. Liq. Cryst 332: 2659-2664
Kun, D.A.I.; Xu, X.B.; Li, Z.M. 2007: Electrically conductive carbon black (CB) filled in situ microfibrillar poly(ethylene terephthalate) (PET)/polyethylene (PE) composite with a selective CB distribution. Polymer (Guildford) 48(3): 849-859
Jae Chun, L.E.E.; Hyuk Chun, K.W.O.N.; Kwon, Y.P.; Park, S.; Lee, H.W.; Lee, J.H.; Kim, J. 2006: Electrically conductive carbon-coated ceramic fiber media. J. Electroceram 17(2-4): 1109-1111
Kun, Z.H.A.N.G.; Baoguo, H.A.N.; Xun, Y.U. 2012: Electrically conductive carbon nanofiber/paraffin wax composites for electric thermal storage. Energy Conversion and Management 64: 62-67
Venkata Ramana, G.; Padya, B.; Srikanth, V.V.S.S.; Jain, P.K.; Padmanabham, G.; Sundararajan, G. 2011: Electrically conductive carbon nanopipe-graphite nanosheet/ polyaniline composites. Carbon (New York) 49(15): 5239-5245
Chung, D.D.L. 2004: Electrically conductive cement-based materials. Advances in Cement Research 16(4): 167-176
Van de Goor, G.; Sagesser, P.; Berroth, K. 1997: Electrically conductive ceramic composites. International Symposium on the Reactivity of Solids 101-103: 1163-1170
Hille, C.; Lippmann, W.; Hurtado, A. 2012: Electrically conductive ceramics and new joining technology for applications in HTR engineering. Nuclear Engineering and Design 251: 222-229
Tatami, J.; Katashima, T.; Komeya, K.; Meguro, T.; Wakihara, T. 2005: Electrically conductive CNT-dispersed silicon nitride ceramics. Journal of the American Ceramic Society 88(10): 2889-2893
Xiantong, B.I.; Zhejian, X.U.E. 1991: Electrically conductive composite of polyaniline and poly (p-phenylene/diphenyl ether-terephthalamide). Polymer'91. International Symposium 26(3): 151-155
Koga, K.; Yamasaki, S.; Narimatsu, K.; Takayanagi, M. 1989: Electrically conductive composite of polyaniline―aramid and its application as a cathode material for secondary battery. Polymer Journal 21(9): 733-738
Jingsheng, B.A.O.; Chaochou, X.U.; Wei, C.A.I.; Xiantong, B.I. 1994: Electrically conductive composite of polypyrrole and liquid crystalline copoly (ester-amide)s. Journal of Applied Polymer Science 52(10): 1489-1497
Mohammadi, A.; Paul, D.W.; Inganas, O.; Nilsson, J.O.; Lundstrom, I. 1994: Electrically conductive composite prepared by template polymerization of pyrrole into a complexed polymer. Journal of Polymer Science. Part A. Polymer Chemistry 32(3): 495-502
Jia, W.; Tchoudakov, R.; Segal, E.; Narkis, M.; Siegmann, A. 2004: Electrically conductive composites based on epoxy resin containing polyaniline-DBSA- and polyaniline-DBSA-coated glass fibers. Journal of Applied Polymer Science 91(2): 1329-1334
Jia, W.; Tchoudakov, R.; Segal, E.; Joseph, R.; Narkis, M.; Siegmann, A. 2003: Electrically conductive composites based on epoxy resin with polyaniline-DBSA fillers. Synthetic Metals 132(3): 269-278
Pinto, G.; Maaroufi, A.K. 2012: Electrically Conductive Composites of Poly(urea- formaldehyde) and Cellulose Filled With Aluminum. Polymer Composites 33(12): 2188-2194
Virtanen, E.; Laakso, J.; Ruohonen, H.; Vakiparta, K.; Jarvinen, H.; Jussila, M.; Passiniemi, P.; Osterholm, J.E. 1997: Electrically conductive compositions based on processible polyanilines : PANIPOL. International Conference on Science and Technology of Synthetic Metals 84(1-3): 113-114
Geissler, U.; Hallensleben, M.L.; Rohde, N. 1997: Electrically conductive copolymers based on 1-methylpyrrole. International Conference on Science and Technology of Synthetic Metals 84(1-3): 173-174
Kotaki, M.; Ke, W.A.N.G.; Mei Ling, T.O.H.; Ling, C.H.E.N.; Siew Yee, W.O.N.G.; Chaobin, H.E. 2006: Electrically conductive epoxy/clay/vapor grown carbon fiber hybrids. Macromolecules 39(3): 908-911
Jia, Q.M.; Li, J.B.; Wang, L.F.; Zhu, J.W.; Zheng, M. 2007: Electrically conductive epoxy resin composites containing polyaniline with different morphologies. Materials Science and Engineering. A, Structural Materials : Properties, Microstructure and Processing 448(1-2): 356-360
Zilberman, M.; Siegmann, A.; Narkis, M. 2000: Electrically conductive extruded filaments of polyaniline/polymer blends. Journal of Polymer Engineering 20(2): 97-109
Andreatta, A.; Yong, C.A.O.; Chiang, J.C.; Heeger, A.J.; Smith, P. 1988: Electrically-conductive fibers of polyaniline spun from solutions in concentrated sulfuric acid. Synthetic Metals 26(4): 383-389
Bin, H.U.A.N.G.; Guojun, K.A.N.G.; Yonghao, N.I. 2005: Electrically conductive fibre composites prepared from polypyrrole-engineered pulp fibres. Canadian Journal of Chemical Engineering 83(5): 896-903
Voyer, J.; Schulz, P.; Schreiber, M. 2008: Electrically Conductive Flame Sprayed Aluminum Coatings on Textile Substrates. Journal of Thermal Spray Technology 17(5-6): 818-823
Shafieizadeganesfahani, A.R.; Katbab, A.A.; Pakdaman, A.R.; Dehkhoda, P.; Shams, M.H.; Ghorbani, A. 2012: Electrically Conductive Foamed Polyurethane/Silicone Rubber/Graphite Nanocomposites as Radio Frequency Wave Absorbing Material: The Role of Foam Structure. Polymer Composites 33(3): 397-403
Bourrat, X. 1993: Electrically conductive grades of carbon black : structure and properties. Carbon (New York) 31(2): 287-302
Ng, S.C.; Chan, H.S.O.; Xia, J.F.; Wanglin, Y.U. 1998: Electrically conductive graft copolymers of poly(methyl methacrylate) with varying polypyrrole and poly(3-alkylpyrroles) contents. Journal of Material Chemistry 8(11): 2347-2352
Duan, R.G.; Garay, J.E.; Kuntz, J.D.; Mukherjee, A.K. 2005: Electrically conductive in situ formed nano-Si3N4/SiC/TiCxN1-x ceramic composite consolidated by pulse electric current sintering (PECS). Journal of the American Ceramic Society 88(1): 66-70
Kun, D.A.I.; Li, Z.M.; Xu, X.B. 2008: Electrically conductive in situ microfibrillar composite with a selective carbon black distribution : An unusual resistivity-temperature behavior upon cooling. Polymer (Guildford) 49(4): 1037-1048
Banerjee, P. 1998: Electrically conductive interpenetrating network composites of polyaniline and carboxymethylcellulose. European Polymer Journal 34(10): 1557-1560
Bryce, M.R.; Petty, M.C. 1995: Electrically conductive Langmuir-Blodgett films of charge-transfer materials. Nature (London) 374(6525): 771-776
Akiyama, S.; Nagakawa, S.; Naoe, M. 1991: Electrically conductive layer of wear-resistant Fe-Mo-b alloy for protecting magnetic recording tape. IEEE Transactions on Magnetics 27(6): 5094-5096
Wolf, H.; Willertporada, M. 2006: Electrically conductive LCP-carbon composite with low carbon content for bipolar plate application in polymer electrolyte membrane fuel cell. Journal of Power Sources 153(1): 41-46
Show, Y.; Itabashi, H. 2008: Electrically conductive material made from CNT and PTFE. International Conference on new Diamond and Nano Carbons 2007 17(4-5): 602-605
Buppelmann, K.; Weber, K. 1994: Electrically conductive materials based on graft copolymers. Plastics Rubber and Composites Processing and Applications 22(1): 47-50
Barra, G.M.O.; Leyva, M.E.; Soares, B.G.; Mattoso, L.H.; Sens, M. 2001: Electrically conductive, melt-processed polyaniline/EVA blends. Journal of Applied Polymer Science 82(1): 114-123
Zhang, Q.H.; Wang, X.H.; Chen, D.J.; Jing, X.B. 2004: Electrically conductive, melt-processed ternary blends of polyaniline/dodecylbenzene sulfonic acid, ethylene/vinyl acetate, and low-density polyethylene. Journal of Polymer Science. Part B. Polymer Physics 42(20): 3750-3758
Wagener, K.B. 1985: Electrically conductive membranes based on polyacetylene chemistry. A.C.S. Symposium Series 269: 429-445
Karttunen, M.; Ruuskanen, P.; Pitkanen, V.; Albers, W.M. 2008: Electrically Conductive Metal Polymer Nanocomposites for Electronics Applications. Journal of Electronic Materials 37(7): 951-954
Yamamoto, T.; Kubota, E.; Taniguchi, A.; Dev, S.; Tanaka, K.; Osakada, K.; Sumita, M. 1992: Electrically conductive metal sulfide-polymer composites prepared by using organosols of metal sulfides. Chemistry of Materials 4(3): 570-576
Aranburu, N.; Eguiazabal, J.I. 2014: Electrically Conductive Multi-walled Carbon Nanotube-Reinforced Amorphous Polyamide Nanocomposites. Polymer Composites 35(3): 587-595
Brigandi, P.J.; Cogen, J.M.; Pearson, R.A. 2014: Electrically Conductive Multiphase Polymer Blend Carbon-Based Composites. Polymer Engineering and Science 54(1): 1-16
Hong, H.E.; Dingfei, Z.H.A.N.G.; Xiangbin, X.U. 2012: Electrically Conductive Multiwall Carbon Nanotubes/Poly(vinyl alcohol) Composites with Aligned Porous Morphologies. Journal of Macromolecular Science. Physics 51(10-12): 2493-2498
Song, L.N.; Xiao, M.; Meng, Y.Z. 2006: Electrically conductive nanocomposites of aromatic polydisulfide/expanded graphite. Composites Science and Technology 66(13): 2156-2162
Chattopadhyay, D.; Mrinal Kanti, B.A.I.N. 2008: Electrically Conductive Nanocomposites of Polyaniline with Poly(vinyl alcohol) and Methylcellulose. Journal of Applied Polymer Science 110(5): 2849-2853
Vzenkatachalam, S.; Rao, K.V.C.; Manoharan, P.T. 1988: Electrically-conductive nickelphthalocyanine polymer. Synthetic Metals 26(3): 237-246
Rolison, D.R.; Dunn, B. 2001: Electrically conductive oxide aerogels : new materials in electrochemistry. Journal of Material Chemistry 11(4): 963-980
Jiang, J.I.A.N.M.I.N.G.; Pan, W.E.I.; Yang, S.H.E.N.G.L.I.N.; Li, G.U.A.N.G. 2005: Electrically conductive PANI-DBSA/Co-PAN composite fibers prepared by wet spinning. Synthetic Metals 149(2-3): 181-186
Zhou, J.; Tzamalis, G.; Zaidi, N.A.; Comfort, N.P.; Monkman, A.P. 2001: Electrically conductive PANi multifilaments spun by a wet-spinning process. J. Mater. Sci 36(13): 3089-3095
Ying, W.A.N.; Ya, F.A.N.G.; Zhilin, H.U.; Quan, W.U. 2006: Electrically conductive poly(DL-lactide)/chitosan/ polypyrrole complexes. Macromolecular Rapid Communications 27(12): 948-954
Stanke, D.; Hallensleben, M.L.; Toppare, L. 1993: Electrically conductive poly(methyl methacrylate-G-pyrrole) via chemical oxidative polymerization. Icsm '92 : International Conference on Science and Technology of Synthetic Metals. Part Ii 55(2-3): 1108-1113
Armes, S.P. 1991: Electrically conductive polyacetylene copolymers. Synthetic Metals 44(1): 95-98
Chiang, J.C.; Smith, P.; Heeger, A.J.; Wudl, F. 1988: Electrically conductive polyacetylene fibres through in situ polymerization in carrier gels. Polymer Communications (Guildford) 29(6): 161-163
Beadle, P.; Armes, S.P.; Gottesfeld, S.; Mombourquette, C.; Houlton, R.; Andrews, W.D.; Agnew, S.F. 1992: Electrically conductive polyaniline-copolymer latex composites. Macromolecules 25(9): 2526-2530
Xie, H.Q.; Liu, H.; Liu, Z.H.; Guo, J.S. 1996: Electrically conductive polyaniline/poly(butadiene-co-styrene-co-2-vinylpyridine) latex composites. die Angewandte Makromolekulare Chemie (243): 117-128
Showan, C.H.E.N.; Woeiguwn, F.A.N.G. 1991: Electrically conductive polyaniline-poly(vinyl alcohol) composite films : physical properties and morphological structures. Macromolecules 24(6): 1242-1248
Terlemezyan, L.; Ivanova, B.; Tacheva, S. 1993: Electrically conductive polyaniline/polyoxymethylene blends. European Polymer Journal 29(7): 1019-1023
Zhang, H.B.; Zheng, W.G.; Qing, Y.A.N.; Yong, Y.A.N.G.; Wang, J.W.; Lu, Z.H.; Ji, G.Y.; Yu, Z.Z. 2010: Electrically conductive polyethylene terephthalate/graphene nanocomposites prepared by melt compounding. Polymer (Guildford) 51(5): 1191-1196
Terlemezyan, L.; Mihailov, M.; Ivanova, B. 1992: Electrically conductive polymer blends comprising polyanilline. Polymer Bulletin (Berlin. Print) 29(3-4): 283-287
Lee, C.H.; Lee, Y.B.; Kim, K.M.; Jeong, M.G.; Lim, D.S. 2013: Electrically conductive polymer composite coating on aluminum for PEM fuel cells bipolar plate. Afore-2011 Asia-Pacific Forum of Renewable Energy 2011 54: 46-50
Koga, K.; Iino, T.; Ueta, S.; Takayanagi, M. 1989: Electrically conductive polymer composite from polypyrrole and electrodeposited poly (p-phenylene terephthalamide) films. Polymer Journal 21(4): 303-312
Biinglin, L.E.E. 1992: Electrically conductive polymer composites and blends. Polymer Engineering and Science 32(1): 36-42
Granstrom, M.; Inganas, O. 1995: Electrically conductive polymer fibres with mesoscopic diameters. I: Studies of structure and electrical properties. Polymer (Guildford) 36(15): 2867-2872
Granstrom, M.; Carlberg, J.C.; Inganas, O. 1995: Electrically conductive polymer fibres with mesoscopic diameters. II: Studies of polymerization behaviour. Polymer (Guildford) 36(16): 3191-3196
Flandin, L.; Brechet, Y.; Cavaille, J.Y. 2001: Electrically conductive polymer nanocomposites as deformation sensors. Composites Science and Technology 61(6): 895-901
Jimenez, G.A.; Jana, S.C. 2007: Electrically conductive polymer nanocomposites of polymethylmethacrylate and carbon nanofibers prepared by chaotic mixing. Composites. Part A, Applied Science and Manufacturing 38(3): 983-993
Schoch, K.F. 1986: Electrically conductive polymers and their applications. IEEE Electrical Insulation Magazine 2(1): 20-26
Kucukyavuz, Z.; Kucukyavuz, Z.; Abbasnejad, N. 1996: Electrically conductive polymers from poly(N-vinylimidazole). Polymer (Guildford) 37(15): 3215-3218
Ghalib, H.; Abdullah, I.; Daik, R. 2013: Electrically Conductive Polystyrene/Polypyrrole Nanocomposites Prepared via Emulsion Polymerization. Polymer-Plastics Technology and Engineering (Softcover Ed) 52(4-6): 478-484
Yoshizumi, M. 1984: Electrically conductive powder with white color tone. Silicates Industriels 49(7-8): 151-157
Inabe, T.; Lomax, J.F.; Lyding, J.W.; Kannewurf, C.R.; Marks, T.J. 1984: Electrically conductive, processable polymeric materials constructed from metallophthalocyanines. Synthetic Metals 9(2): 303-316
Takeno, T.; Miki, H.; Takagi, T.; Onodera, H. 2006: Electrically conductive properties of tungsten-containing diamond-like carbon films. Applied Diamond Conference 15(11-12): 1902-1905
Chen, Z.J.; Yongpeng, X.U.E.; Frisch, H.L. 1994: Electrically conductive pseudo IPNs of linear poly(carbonate-urethane) and crosslinked polychloroprene. Journal of Polymer Science. Part A. Polymer Chemistry 32(12): 2395-2400
Gongqing, T.A.N.G.; Jiang, Z.G.; Xiaofeng, L.I.; Zhang, H.B.; Song, H.O.N.G.; Yu, Z.Z. 2014: Electrically conductive rubbery epoxy/diamine-functionalized graphene nanocomposites with improved mechanical properties. Composites. Part B, Engineering 67: 564-570
Junqing, M.A.; Huihong, S.O.N.G.; Frisch, H.L.; Maaref, S.; Sun, S.S. 2002: Electrically conductive semi-IPNs based on polyaniline and crosslinked polyvinylacetate. Journal of Applied Polymer Science 85(11): 2287-2293
Yading, W.A.N.G.; Rubner, M.F. 1992: Electrically conductive semiinterpenetrating polymer networks of poly(3-octylthiophene). Macromolecules 25(12): 3284-3290
Cooper, H.; Segal, E.; Srebnik, S.; Tchoudakov, R.; Narkis, M.; Siegmann, A. 2006: Electrically conductive sensors for liquids based on quaternary ethylene vinyl acetate (EVA)/copolyamide/ maleated-EVA/polyaniline blends. Journal of Applied Polymer Science 101(1): 110-117
Balog, M.; Saigalik, P.; Hofer, F.; Warbichler, P.; Frohlich, K.; Vavra, O.; Janega, J.; Huang, J.L. 2006: Electrically conductive SiC-(Nb,Ti)ss-(Nb,Ti)Css cermet. Journal of the European Ceramic Society 26(7): 1259-1266
Haiqing, Y.A.O.; Chu, C.C.; Sue, H.J.; Nishimura, R. 2013: Electrically conductive superhydrophobic octadecylamine-functionalized multiwall carbon nanotube films. Carbon (New York) 53: 366-373
Hochberg, G.C. 1995: Electrically conductive TCNQ complexes of aromatic ionenes. Polymer International 38(2): 119-124
Kyung Wha, O.H.; Kyung Hwa, H.O.N.G.; Seong Hun, K.I.M. 1999: Electrically conductive textiles by in situ polymerization of aniline. Journal of Applied Polymer Science 74(8): 2094-2101
Mighri, F.; Huneault, M.A.; Champagne, M.F. 2004: Electrically conductive thermoplastic blends for injection and compression molding of bipolar plates in the fuel cell application. Polymer Engineering and Science 44(9): 1755-1765
Michaeli, W.; Pfefferkorn, T.G. 2009: Electrically Conductive Thermoplastic/Metal Hybrid Materials for Direct Manufacturing of Electronic Components. Polymer Engineering and Science 49(8): 1511-1524
Narkis, M.; Rafail, I.; Victor, G.; Tzur, A.; Tchoudakov, R.; Siegmann, A. 2000: Electrically conductive thermosetting resins containing low concentrations of carbon black. Journal of Applied Polymer Science 76(7): 1165-1170
Jianguo, L.I.U.; Xiangyou, L.I.; Xiaoye, W.A.N.G.; Xiaoyan, Z.E.N.G. 2010: Electrically Conductive Thick Film Made from Silver Alkylcarbamates. Journal of Electronic Materials 39(10): 2267-2273
Maruno, T.; Hayashida, S.; Sukegawa, K. 1989: Electrically conductive thin films of tetramethyltetraselenafulvalene salts. Film preparation and electrical conductivity. Journal of Electroanalytical Chemistry and Interfacial Electrochemistry 267(1-2): 303-307
Xue, P.; Park, K.H.; Tao, X.M.; Chen, W.; Cheng, X.Y. 2007: Electrically conductive yarns based on PVA/carbon nanotubes. Composite Structures 78(2): 271-277
Salehi, S.; Van der Biest, O.; Vleugels, J. 2006: Electrically conductive ZrO2-TiN composites. Journal of the European Ceramic Society 26(15): 3173-3179
Hauer, M.C.; Yu, Q.; Lyons, E.R.; Lin, C.H.; Au, A.A.; Lee, H.P.; Willner, A.E. 2004: Electrically controllable all-fiber PMD emulator using a compact array of thin-film microheaters. Journal of Lightwave Technology 22(4): 1059-1065
Damm, C.; Freese, J.; Schussler, M.; Jakoby, R. 2007: Electrically controllable artificial transmission line transformer for matching purposes. Ieee Trans. Microwave Theor. Tech 55(6): 1348-1354
Cudney, R.S.; Escamilla, H.M.; Rios, L.A. 2004: Electrically controllable diffuser made from randomly poled lithium niobate. Journal of the Optical Society of America. B, Optical Physics 21(10): 1797-1803
Jie, L.U.O.; Ping, X.U.; Lei, G.A.O. 2012: Electrically controllable unidirectional transmission in a heterostructure composed of a photonic crystal and a deformable liquid droplet. Solid State Communications 152(7): 577-580
Pozhidaev, E.P.; Hegde, G.; Peizhi, X.U.; Chigrinov, V.G.; Kwok, H.S. 2008: Electrically Controlled Birefringent Colors of Smectic C* Deformed Helix Ferroelectric Liquid Crystal Cells. International Conference on Ferroelectric Liquid Crystals 365: 35-38
Dixit, M.; Lakhtakia, A. 2007: Electrically controlled Bragg resonances of an ambichiral electro-optic structure : oblique incidence. Proc. Spie Int. Soc. Opt. Eng: 663810.1-663810.5
Domanski, A.W.; Budaszewski, D.; Sierakowski, M.; Wolinski, T.R. 2007: Electrically-controlled depolarization of light by use of liquid crystal cells. Proc. Spie Int. Soc. Opt. Eng: 65870E.1-65870E.6
Mendoza, C.I.; Olivares, J.A.; Reyes, J.A. 2007: Electrically controlled dispersion in a nematic cell. Physica. B, Condensed Matter 387(1-2): 167-171
Pylak, M.; Swirkowicz, R. 2010: Electrically controlled Fano lines in basic sol double quantum dot system with intra-dot Coulomb interaction. Physica Status Solidi. B. Basic Research 247(1): 122-128
Hu, B.B.; Froberg, N.; Mack, M.; Zhang, X.C.; Auston, D.H. 1991: Electrically controlled frequency scanning by a photoconducting antenna array. Applied Physics Letters 58(13): 1369-1371
Gevorgian, S.S.; Kaparkov, D.I.; Vendik, O.G. 1994: Electrically controlled HTSC/ferroelectric coplanar waveguide. Iee Proceedings. Microwaves, Antennas and Propagation 141(6): 501-503
Shinohara, H.; Kojima, J.; Aizawa, M. 1989: Electrically controlled ion transfer and pH change near a conducting polymer-coated electrode. Journal of Electroanalytical Chemistry and Interfacial Electrochemistry 266(2): 297-308
Glushchenko, A.; Yaroshchuk, O. 1998: Electrically controlled light scattering effect in the emulsion liquid crystal - isotropic liquid. Mol. Cryst. Liq. Cryst. Sci. Technol., A Mol. Cryst. Liq. Cryst 324: 45-50
Van Konynenburg, P.; Gajewski, K.J. 1989: Electrically-controlled light transmission glazing for automotive applications based on NCAP technology. Sae Transactions 98(6): 1091-1098
Corellamadueno, A.; Adrian Reyes, J. 2006: Electrically controlled liquid crystal fiber. Optics Communications 264(1): 148-155
Adrian Reyes, J.; Lakhtakia, A. 2006: Electrically controlled optical bandgap in a structurally chiral material. Optics Communications 259(1): 164-173
Reyes, J.A.; Lakhtakia, A. 2006: Electrically controlled reflection and transmission of obliquely incident light by structurally chiral materials. Optics Communications 266(2): 565-573
Tsai, T.R.; Chen, C.Y.; Pan, R.P.; Pan, C.L.; Zhang, X.C. 2004: Electrically controlled room temperature terahertz phase shifter with liquid crystal. IEEE Microwave and Wireless Components Letters 14(2): 77-79
Utsumi, M.; Gotou, T.; Daido, K.; Ozaki, M.; Yoshino, K. 1991: Electrically controlled second-harmonic generation in ferroelectric liquid crystal. Jpn. J. Appl. Phys 30(9B): 2369-2372
Tang, H.; Chen, L.; Zheng, G.; Huang, D.; She, W. 2009: Electrically controlled second harmonic generation of circular polarization in a single LiNbO3 optical superlattice. Applied Physics. B, Lasers and Optics 94(4): 661-666
Barberi, R.; Boix, M.; Durand, G. 1989: Electrically controlled surface bistability in nematic liquid crystals. Applied Physics Letters 55(24): 2506-2508
Maksimochkin, A.G.; Pasechnik, S.V.; Tsvetkov, V.A.; Yakovlev, D.A.; Maksimochkin, G.I.; Chigrinov, V.G. 2007: Electrically controlled switching of light beams in the plane of liquid crystal layer. Optics Communications 270(2): 273-279
Buchnev, O.; Glushchenko, A.; Puchkovskaya, G.; Reznikov, Y.; Tkachenko, O.; West, J. 2002: Electrically controlled transparency of salted liquid crystal. Mol. Cryst. Liq. Cryst. Sci. Technol., A Mol. Cryst. Liq. Cryst 375: 73-79
Maksimochkin, A.G.; Pasechnik, S.V.; Maksimochkin, G.I.; Chigrinov, V.G. 2010: Electrically controlled waveguide mode in LC layer for fiber optic applications. Optics Communications 283(16): 3136-3141
Petrov, A.A.; Fromzel, V.A. 1993: Electrically controlled wavelength tuning and sweep of a 1.5-μm erbium phosphate glass laser. Optics and Spectroscopy 74(6): 715-717
Crowley, M.F.; Field, R.J. 1986: Electrically coupled Belousov-Zhabotinskii oscillators. I: Experiments and simulations. Journal of Physical Chemistry (1952) 90(9): 1907-1915
Bormashenko, E.; Pogreb, R.; Stein, T.; Whyman, G.; Schiffer, M.; Aurbach, D. 2011: Electrically Deformable Liquid Marbles. Journal of Adhesion Science and Technology 25(12): 1371-1377
Becchi, M.; Jagemalm, P.; Hubert, P.; Oldano, C. 1999: Electrically deformed short pitch chiral smectic liquid crystals. Mol. Cryst. Liq. Cryst. Sci. Technol., A Mol. Cryst. Liq. Cryst 328: 383-390
Maier, A.; Grupp, A.; Mehring, M. 1996: Electrically detected electron spin resonance (EDSER) in thiophene thin films and a thiophene/C60 double layer. Solid State Communications 99(9): 623-626
Hiromitsu, I.; Kaimori, Y.; Kitano, M.; Shinto, R.; Ito, T. 1999: Electrically detected electron spin resonance of doped-phthalocyanine/C60 heterojunction. International Conference on Science and Technology of Synthetic Metals 102(1-3): 1439-1440
Hiromitsu, I.; Kitano, M.; Shinto, R.; Ito, T. 2001: Electrically detected electron spin resonance of Pt/C60/In/Al Schottky-barrier cell. International Conference on Science and Technology of Synthetic Metals 121(1-3): 1539-1540
Hiromitsu, I.; Kitauchi, T.; Ito, T. 2001: Electrically detected electron spin resonance of Pt/C70/In/Al Schottky-junction system. Journal of the Physical Society of Japan 70(1): 311-312
Graeff, C.F.O.; Brunello, C.A.; Faria, R.M. 1999: Electrically detected magnetic resonance applied to polyaniline. International Conference on Science and Technology of Synthetic Metals 101(1-3): 805-806
Rong, F.; Poindexter, E.H.; Harmatz, M.; Buchwald, W.R.; Gerardi, G.J. 1990: Electrically detected magnetic resonance in p-n junction diodes. Solid State Communications 76(8): 1083-1086
Graeff, C.F.O.; Brandt, M.S.; Faria, R.M.; Leising, A.G. 1997: Electrically detected magnetic resonance in undoped polyacetylene and polyaniline. Physica Status Solidi. A. Applied Research 162(2): 713-721
Brandt, M.S.; Bayerl, M.W.; Stutzmann, M.; Graeff, C.F.O. 1998: Electrically detected magnetic resonance of a-Si:H at low magnetic fields : the influence of hydrogen on the dangling bond resonance. J. Non-Cryst. Solids 227-30: 343-347
Rong, F.C.; Gerardi, G.J.; Buchwald, W.R.; Poindexter, E.H.; Umlor, M.T.; Keeble, D.J.; Warren, W.L. 1992: Electrically detected magnetic resonance of a transition metal related recombination center in Si p-n diodes. Applied Physics Letters 60(5): 610-612
Wimbauer, T.; Mochizuki, Y.; Ito, K.; Horikawa, M.; Kitano, T. 2000: Electrically detected magnetic resonance of near-interface defects in Si pn-junction structures with LOCOS isolation. Appl. Surf. Sci 159-60: 72-74
Castro, F.A.; Silva, G.B.; Santos, L.F.; Faria, R.M.; Nuesch, F.; Zuppiroli, L.; Graelff, C.F.O. 2004: Electrically detected magnetic resonance of organic and polymeric light emitting diodes. J. Non-Cryst. Solids 338-40: 622-625
Akhtar, W.; Morishita, H.; Vlasenko, L.S.; Poloskin, D.S.; Itoh, K.M. 2009: Electrically detected magnetic resonance of phosphorous due to spin dependent recombination with triplet centers in γ-irradiated silicon. Physica, B Condens. Matter 404(23-24): 4583-4585
Graf, T.; Brandt, M.S.; Nebel, C.E.; Stutzmann, M.; Koizumi, S. 2001: Electrically detected magnetic resonance studies of phosphorus doped diamond. Physica, B Condens. Matter 308-10: 593-597
Paleari, S.; Molle, A.; Accetta, F.; Lamperti, A.; Cianci, E.; Fanciulli, M. 2014: Electrically detected magnetic resonance study of the Ge dangling bonds at the Ge(111)/GeO2 interface after capping with Al2O3 layer. Appl. Surf. Sci 291: 3-5
Venema, E.; Kraak, J.C.; Poppe, H.; Tijssen, R. 1998: Electrically driven capillary size exclusion chromatography. Chromatographia (Wiesbaden) 48(5-6): 347-354
Chaudhury, S.; Agarwal, C.; Pandey, A.K.; Goswami, A.; Sastry, P.U. 2013: Electrically-driven facilitated transport of Cs+ across copper ferrocyanide channels in track etched membrane. Journal of Membrane Science 434: 93-98
Sezgin, M.; Aggarwala, B.D.; Ariel, P.D. 1988: Electrically driven flows in MHD with mixed electromagnetic boundary conditions. Zeitschrift für Angewandte Mathematik und Mechanik 68(7): 267-280
Ried, S.; Pleiner, H.; Zimmermann, W. 2000: Electrically driven hybrid instabilities in smectic C liquid crystal films. Europhysics Letters 52(5): 525-531