Section 53

EurekaMag Full Text Articles Chapter 52,335


Yin, P.; Pradeep, C.P.; Zhang, B.; Li, F.-Y.; Lydon, C.; Rosnes, M.H.; Li, D.; Bitterlich, E.; Xu, L.; Cronin, L.; Liu, T. 2012: Controllable self-assembly of organic-inorganic amphiphiles containing Dawson polyoxometalate clusters. Chemistry 18(26): 8157-8162
Sun, L.-H.; Sun, Y.-L.; Yang, L.-J.; Zhang, J.; Chen, Z.-X. 2013: Controllable self-assembly of sodium caseinate with a zwitterionic vitamin-derived bolaamphiphile. Journal of Agricultural and Food Chemistry 61(44): 10582-10589
Chen, Q.; Zhou, H.; Song, T.-B.; Luo, S.; Hong, Z.; Duan, H.-S.; Dou, L.; Liu, Y.; Yang, Y. 2014: Controllable self-induced passivation of hybrid lead iodide perovskites toward high performance solar cells. Nano Letters 14(7): 4158-4163
Shundo, A.; Mallik, A.K.; Sakurai, T.; Takafuji, M.; Nagaoka, S.; Ihara, H. 2009: Controllable shape selectivity based on highly ordered carbonyl and methyl groups in simple beta-structural polypeptide on silica. Journal of Chromatography. a 1216(34): 6170-6176
Steinbock, L.J.; Steinbock, J.F.; Radenovic, A. 2013: Controllable shrinking and shaping of glass nanocapillaries under electron irradiation. Nano Letters 13(4): 1717-1723
Deng, T.; Chen, J.; Li, M.; Wang, Y.; Zhao, C.; Zhang, Z.; Liu, Z. 2013: Controllable shrinking of inverted-pyramid silicon nanopore arrays by dry-oxygen oxidation. Nanotechnology 24(50): 505303
Park, H.-S.; Agarwal, A.; Kotov, N.A.; Lavrentovich, O.D. 2008: Controllable side-by-side and end-to-end assembly of au nanorods by lyotropic chromonic materials. Langmuir 24(24): 13833-13837
Shojaie, E.; Mirzaei, A.; Bahrampour, A. 2014: Controllable single-mode random laser using stimulated Raman gain. Optics Letters 39(15): 4537-4540
Sheng, J.; Tang, K.; Cheng, W.; Wang, J.; Nie, Y.; Yang, Q. 2009: Controllable solvothermal synthesis and photocatalytic properties of complex (oxy)fluorides K2TiOF4, K3TiOF5, K7Ti4O4F7 and K2TiF6. Journal of Hazardous Materials 171(1-3): 279-287
Fujiwara, K.; Yano, A. 2011: Controllable spectrum artificial sunlight source system using LEDs with 32 different peak wavelengths of 385-910 nm. Bioelectromagnetics 32(3): 243-252
Xia, Y.; Gu, Y.; Zhou, X.; Xu, H.; Zhao, X.; Yaseen, M.; Lu, J.R. 2012: Controllable stabilization of poly(N-isopropylacrylamide)-based microgel films through biomimetic mineralization of calcium carbonate. Biomacromolecules 13(8): 2299-2308
He, M.; Xu, M.; Zhang, L. 2013: Controllable stearic acid crystal induced high hydrophobicity on cellulose film surface. Acs Applied Materials and Interfaces 5(3): 585-591
Li, H.-H.; Jin, Y.-H.; Wang, J.-Q.; Tian, S.-K. 2009: Controllable stereoselective synthesis of trisubstituted alkenes by a catalytic three-component reaction of terminal alkynes, benzylic alcohols, and simple arenes. Organic and Biomolecular Chemistry 7(16): 3219-3221
Li, Y.; Duan, G.; Cai, W. 2007: Controllable superhydrophobic and lipophobic properties of ordered pore indium oxide array films. Journal of Colloid and Interface Science 314(2): 615-620
Chen, Z.; Liu, Y.; Zhang, S.; Luo, J. 2013: Controllable superlubricity of glycerol solution via environment humidity. Langmuir 29(38): 11924-11930
Yuan, G.; Huo, Y.; Nie, X.; Jiang, H.; Liu, B.; Fang, X.; Zhao, F. 2013: Controllable supramolecular structures and luminescent properties of unique trimeric Zn(II) 8-hydroxyquinolinates tuned by functional substituents. Dalton Transactions 42(8): 2921-2929
Wan, S.J.; Wang, L.; Xu, X.J.; Zhao, C.H.; Liu, X.D. 2014: Controllable surface morphology and properties via mist polymerization on a plasma-treated polymethyl methacrylate surface. Soft Matter 10(6): 903-910
Wang, Y.; Yang, J.; Liu, Y.-Y.; Ma, J.-F. 2013: Controllable syntheses of porous metal-organic frameworks: encapsulation of Ln(III) cations for tunable luminescence and small drug molecules for efficient delivery. Chemistry 19(43): 14591-14599
Li, J.; Zhou, J.; Jiang, T.; Wang, B.; Gu, M.; Petti, L.; Mormile, P. 2014: Controllable synthesis and SERS characteristics of hollow sea-urchin gold nanoparticles. Physical Chemistry Chemical Physics: Pccp 16(46): 25601-25608
Zhang, W-Zhong.; Qiao, X-Liang.; Luo, L-Li.; Chen, J-Guo. 2009: Controllable synthesis and UV-Vis spectral analysis of silver nanoparticles in AOT microemulsion. Guang Pu Xue Yu Guang Pu Fen Xi 29(3): 789-792
Wang, H.-J.; Yu, X.-H.; Cao, Y.; Zhou, B.; Wang, C.-F. 2012: Controllable synthesis and adjustable antineoplastic activity of bovine serum albumin-conjugated PbS/Ag2S core/shell nano-composites. Journal of Inorganic Biochemistry 113: 40-46
Huang, Z.; Jiang, X.; Guo, D.; Gu, N. 2011: Controllable synthesis and biomedical applications of silver nanomaterials. Journal of Nanoscience and Nanotechnology 11(11): 9395-9408
Zhou, J.; Ren, F.; Wu, W.; Zhang, S.; Xiao, X.; Xu, J.; Jiang, C. 2012: Controllable synthesis and catalysis application of hierarchical PS/au core-shell nanocomposites. Journal of Colloid and Interface Science 387(1): 47-55
Tian, J.; Liu, R.; Zhao, Y.; Xu, Q.; Zhao, S. 2009: Controllable synthesis and cell-imaging studies on CdTe quantum dots together capped by glutathione and thioglycolic acid. Journal of Colloid and Interface Science 336(2): 504-509
Poursamar, S.A.; Azami, M.; Mozafari, M. 2011: Controllable synthesis and characterization of porous polyvinyl alcohol/hydroxyapatite nanocomposite scaffolds via an in situ colloidal technique. Colloids and Surfaces. B Biointerfaces 84(2): 310-316
Sun, Z.; Liufu, S.; Chen, X.; Chen, L. 2010: Controllable synthesis and electrochemical hydrogen storage properties of Bi2Se3 architectural structures. Chemical Communications 46(18): 3101-3103
Jin, R.; Chen, G.; Pei, J.; Sun, J.; Wang, Y. 2011: Controllable synthesis and electrochemical hydrogen storage properties of Sb₂Se₃ ultralong nanobelts with urchin-like structures. Nanoscale 3(9): 3893-3899
Yan, X.; Gan, L.; Lin, Y.-C.; Bai, L.; Wang, T.; Wang, X.; Luo, J.; Zhu, J. 2014: Controllable synthesis and enhanced electrocatalysis of iron-based catalysts derived from electrospun nanofibers. Small 10(20): 4072-4079
Luo, Y.-S.; Dai, X.-J.; Zhang, W.-D.; Yang, Y.; Sun, C.Q.; Fu, S.-Y. 2010: Controllable synthesis and luminescent properties of novel erythrocyte-like CaMoO4 hierarchical nanostructures via a simple surfactant-free hydrothermal route. Dalton Transactions 39(9): 2226-2231
Tian, Y.; Chen, B.; Yu, H.; Hua, R.; Li, X.; Sun, J.; Cheng, L.; Zhong, H.; Zhang, J.; Zheng, Y.; Yu, T.; Huang, L. 2011: Controllable synthesis and luminescent properties of three-dimensional nanostructured CaWO4:Tb3+ microspheres. Journal of Colloid and Interface Science 360(2): 586-592
Lv, B.; Xu, Y.; Gao, Q.; Wu, D.; Sun, Y. 2010: Controllable synthesis and magnetism of iron oxides nanorings. Journal of Nanoscience and Nanotechnology 10(4): 2348-2359
Wu, W.; Xiao, X.; Peng, T.; Jiang, C. 2010: Controllable synthesis and optical properties of connected zinc oxide nanoparticles. Chemistry An Asian Journal 5(2): 315-321
Ye, T.; Dong, Z.; Zhao, Y.; Yu, J.; Wang, F.; Guo, S.; Zou, Y. 2011: Controllable synthesis and photoluminescence of single-crystalline BaHfO3 hollow micro- and nanospheres. Langmuir 27(14): 8878-8884
Yin, S.; Chen, Y.; Su, Y.; Jia, C.; Zhou, Q.; Li, S.; Xin, M.; Kong, W.; Zhang, X.; Lü, Y. 2008: Controllable synthesis and photoluminescence properties of ZnO nanorod and nanopin arrays. Journal of Nanoscience and Nanotechnology 8(2): 993-996
Huang, S.; Zhang, X.; Wang, L.; Bai, L.; Xu, J.; Li, C.; Yang, P. 2012: Controllable synthesis and tunable luminescence properties of Y2(WO4)3:Ln3+ (Ln = Eu, Yb/Er, Yb/Tm and Yb/Ho) 3D hierarchical architectures. Dalton Transactions 41(18): 5634-5642
Niu, N.; Yang, P.; Liu, Y.; Li, C.; Wang, D.; Gai, S.; He, F. 2011: Controllable synthesis and up-conversion properties of tetragonal BaYF5:Yb/Ln (Ln=Er, Tm, and Ho) nanocrystals. Journal of Colloid and Interface Science 362(2): 389-396
Huang, H.; Chen, H.; Xia, Y.; Tao, X.; Gan, Y.; Weng, X.; Zhang, W. 2012: Controllable synthesis and visible-light-responsive photocatalytic activity of Bi2WO6 fluffy microsphere with hierarchical architecture. Journal of Colloid and Interface Science 370(1): 132-138
Li, G.; Wang, X.; Liu, L.; Liu, R.; Shen, F.; Cui, Z.; Chen, W.; Zhang, T. 2015: Controllable synthesis of 3D Ni(OH)2 and NiO nanowalls on various substrates for high-performance nanosensors. Small 11(6): 731-739
Diao, X.; Yu, J.; Qin, J.; Xing, Y.; Zhang, X. 2012: Controllable synthesis of 6H-1,4-diazepine-2,3-dicarbonitrile nanocrystals and their optical properties. Journal of Nanoscience and Nanotechnology 12(9): 7405-7408
Zhang, W.; Han, M.; Jiang, Z.; Song, Y.; Xie, Z.; Xu, Z.; Zheng, L. 2007: Controllable synthesis of CoO nanosheets and their magnetic properties. Chemphyschem: a European Journal of Chemical Physics and Physical Chemistry 8(14): 2091-2095
Wang, D.; Li, Y. 2011: Controllable synthesis of Cu-based nanocrystals in ODA solvent. Chemical Communications 47(12): 3604-3606
Ding, Y.; Ge, D.; Yang, L.; Li, Z.; Xin, W.; Li, Y.; Wu, X.; Zhao, J. 2013: Controllable synthesis of Cu2O petalody octahedral microcrystals and multi-patterned evolution. Journal of Colloid and Interface Science 392: 151-157
Liu, X.; Li, F.; Wang, H.; Yang, J.; Li, Z.; Wang, Y.; Jin, H. 2014: Controllable synthesis of Cu2O/Cu composites with stable photocatalytic properties. Journal of Nanoscience and Nanotechnology 14(6): 4108-4113
Zhuang, Z.; Peng, Q.; Zhang, B.; Li, Y. 2008: Controllable synthesis of Cu2S nanocrystals and their assembly into a superlattice. Journal of the American Chemical Society 130(32): 10482-10483
Hai, Z.; Zhu, C.; Huang, J.; Liu, H.; Chen, J. 2010: Controllable synthesis of CuO nanowires and Cu2O crystals with shape evolution via gamma-irradiation. Inorganic Chemistry 49(16): 7217-7219
Zhang, Y.; Liu, H.; Zhao, Y.; Fang, Y. 2008: Controllable synthesis of CuS-P(AM-co-MAA) composite microspheres with patterned surface structures. Journal of Colloid and Interface Science 325(2): 391-397
Yue, D.; Lu, W.; Li, C.; Zhang, X.; Liu, C.; Wang, Z. 2014: Controllable synthesis of Ln3+ (Ln = Tb, Eu) doped zinc phosphate nano-/micro-structured materials: phase, morphology and luminescence properties. Nanoscale 6(4): 2137-2145
Meng, F.; Yan, X.; Zhu, Y.; Si, P. 2013: Controllable synthesis of MnO2/polyaniline nanocomposite and its electrochemical capacitive property. Nanoscale Research Letters 8(1): 179
Peng, L.; Shen, S.; Zhang, Y.; Xu, H.; Wang, Q. 2012: Controllable synthesis of MnS nanocrystals from a single-source precursor. Journal of Colloid and Interface Science 377(1): 13-17
Chen, J.; Guo, C.; Wang, M.; Huang, L.; Wang, L.; Mi, C.; Li, J.; Fang, X.; Mao, C.; Xu, S. 2011: Controllable synthesis of NaYF(4) : Yb,Er upconversion nanophosphors and their application to in vivo imaging of Caenorhabditis elegans. Journal of Materials Chemistry 21(8): 2632
Niu, Z.; Zhang, S.; Sun, Y.; Gai, S.; He, F.; Dai, Y.; Li, L.; Yang, P. 2014: Controllable synthesis of Ni/SiO₂ hollow spheres and their excellent catalytic performance in 4-nitrophenol reduction. Dalton Transactions 43(44): 16911-16918
Yuan, M.; Pullarkat, S.A.; Yeong, C.H.; Li, Y.; Krishnan, D.; Leung, P.-H. 2009: Controllable synthesis of P-chiral 1,2- and 1,3-diphosphines via asymmetric Diels-Alder reactions involving functionalized allylic phosphines as dienophiles. Dalton Transactions 19: 3668-3670
Wang, J.; Li, W.; Wang, F.; Xia, Y.; Asiri, A.M.; Zhao, D. 2014: Controllable synthesis of SnO2@C yolk-shell nanospheres as a high-performance anode material for lithium ion batteries. Nanoscale 6(6): 3217-3222
Liu, S.-J.; Cheng, H.-Y.; Zhao, F.-Y.; Gong, J.-Y.; Yu, S.-H. 2008: Controllable synthesis of VSB-5 microspheres and microrods: growth mechanism and selective hydrogenation catalysis. Chemistry 14(13): 4074-4081
Zhang, L.; Hou, X.; Liu, M.; Lv, Y.; Hou, X. 2011: Controllable synthesis of Y2O3 microstructures for application in cataluminescence gas sensing. Chemistry 17(25): 7105-7111
Zhang, P.; Shao, C.; Zhang, M.; Guo, Z.; Mu, J.; Zhang, Z.; Zhang, X.; Liang, P.; Liu, Y. 2012: Controllable synthesis of Zn2TiO4@carbon core/shell nanofibers with high photocatalytic performance. Journal of Hazardous Materials 229-230: 265-272
Talebian, N.; Amininezhad, S.Matin.; Doudi, M. 2013: Controllable synthesis of ZnO nanoparticles and their morphology-dependent antibacterial and optical properties. Journal of Photochemistry and Photobiology. B Biology 120: 66-73
Lv, Y.; Xiao, W.; Li, W.; Xue, J.; Ding, J. 2013: Controllable synthesis of ZnO nanoparticles with high intensity visible photoemission and investigation of its mechanism. Nanotechnology 24(17): 175702
Dong, J.-J.; Zhen, C.-Y.; Hao, H.-Y.; Xing, J.; Zhang, Z.-L.; Zheng, Z.-Y.; Zhang, X.-W. 2013: Controllable synthesis of ZnO nanostructures on the Si substrate by a hydrothermal route. Nanoscale Research Letters 8(1): 378
Li, X.; Zhang, F.; Ma, C.; Deng, Y.; Wang, Z.; Elingarami, S.; He, N. 2012: Controllable synthesis of ZnO with various morphologies by hydrothermal method. Journal of Nanoscience and Nanotechnology 12(3): 2028-2036
Xie, S.; Lu, X.; Zhai, T.; Gan, J.; Li, W.; Xu, M.; Yu, M.; Zhang, Y-Ming.; Tong, Y. 2012: Controllable synthesis of ZnxCd1-xS@ZnO core-shell nanorods with enhanced photocatalytic activity. Langmuir 28(28): 10558-10564
He, W.-W.; Li, S.-L.; Yang, G.-S.; Lan, Y.-Q.; Su, Z.-M.; Fu, Q. 2012: Controllable synthesis of a non-interpenetrating microporous metal-organic framework based on octahedral cage-like building units for highly efficient reversible adsorption of iodine. Chemical Communications 48(80): 10001-10003
Zhang, X.; Yu, P.; Wang, D.; Ma, Y. 2010: Controllable synthesis of alpha-MnO2 nanostructures and phase transformation to beta-MnO2 microcrystals by hydrothermal crystallization. Journal of Nanoscience and Nanotechnology 10(2): 898-904
Leng, W.; Zhou, S.; You, B.; Wu, L. 2012: Controllable synthesis of aniline oligomers into uniform, dispersed cross and needle morphologies. Journal of Colloid and Interface Science 374(1): 331-338
Huang, S.; Yang, Q.; Yu, B.; Li, D.; Zhao, R.; Li, S.; Kang, J. 2014: Controllable synthesis of branched ZnO/Si nanowire arrays with hierarchical structure. Nanoscale Research Letters 9(1): 328
Luo, N.; Liu, K.; Liu, Z.; Li, X.; Chen, S.; Shen, Y.; Chen, T. 2012: Controllable synthesis of carbon coated iron-based composite nanoparticles. Nanotechnology 23(47): 475603
Xue, Y.; Wu, B.; Bao, Q.; Liu, Y. 2014: Controllable synthesis of doped graphene and its applications. Small 10(15): 2975-2991
Fan, X.; Fang, G.; Guo, S.; Liu, N.; Gao, H.; Qin, P.; Li, S.; Long, H.; Zheng, Q.; Zhao, X. 2011: Controllable synthesis of flake-like Al-doped ZnO nanostructures and its application in inverted organic solar cells. Nanoscale Research Letters 6: 546
Zhang, Y.; Mu, J. 2007: Controllable synthesis of flower- and rod-like ZnO nanostructures by simply tuning the ratio of sodium hydroxide to zinc acetate. Nanotechnology 18(7): 075606
Li, Y.; Liu, S.; Yao, T.; Sun, Z.; Jiang, Z.; Huang, Y.; Cheng, H.; Huang, Y.; Jiang, Y.; Xie, Z.; Pan, G.; Yan, W.; Wei, S. 2012: Controllable synthesis of gold nanoparticles with ultrasmall size and high monodispersity via continuous supplement of precursor. Dalton Transactions 41(38): 11725-11730
Wei, D.; Liu, Y. 2010: Controllable synthesis of graphene and its applications. Advanced Materials 22(30): 3225-3241
Meng, X.; Geng, D.; Liu, J.; Li, R.; Sun, X. 2011: Controllable synthesis of graphene-based titanium dioxide nanocomposites by atomic layer deposition. Nanotechnology 22(16): 165602
Wang, L.; Tian, C.; Wang, B.; Wang, R.; Zhou, W.; Fu, H. 2008: Controllable synthesis of graphitic carbon nanostructures from ion-exchange resin-iron complex via solid-state pyrolysis process. Chemical Communications 42: 5411-5413
Fang, B.; Kim, M.; Kim, J.H.; Yu, J.-S. 2008: Controllable synthesis of hierarchical nanostructured hollow core/mesopore shell carbon for electrochemical hydrogen storage. Langmuir 24(20): 12068-12072
Wang, T.; Zhang, L.; Wang, H.; Yang, W.; Fu, Y.; Zhou, W.; Yu, W.; Xiang, K.; Su, Z.; Dai, S.; Chai, L. 2013: Controllable synthesis of hierarchical porous Fe3O4 particles mediated by poly(diallyldimethylammonium chloride) and their application in arsenic removal. Acs Applied Materials and Interfaces 5(23): 12449-12459
Kim, M.; Cho, S.; Song, J.; Son, S.; Jang, J. 2012: Controllable synthesis of highly conductive polyaniline coated silica nanoparticles using self-stabilized dispersion polymerization. Acs Applied Materials and Interfaces 4(9): 4603-4609
Huang, X.; Yang, J.; Mao, S.; Chang, J.; Hallac, P.B.; Fell, C.R.; Metz, B.; Jiang, J.; Hurley, P.T.; Chen, J. 2014: Controllable synthesis of hollow Si anode for long-cycle-life lithium-ion batteries. Advanced Materials 26(25): 4326-4332
Chen, W.-M.; Qie, L.; Shao, Q.-G.; Yuan, L.-X.; Zhang, W.-X.; Huang, Y.-H. 2012: Controllable synthesis of hollow bipyramid β-MnO(2) and its high electrochemical performance for lithium storage. Acs Applied Materials and Interfaces 4(6): 3047-3053
Xiong, S.; Yuan, C.; Zhang, X.; Xi, B.; Qian, Y. 2009: Controllable synthesis of mesoporous Co3O4 nanostructures with tunable morphology for application in supercapacitors. Chemistry 15(21): 5320-5326
Zhou, J.; Huang, F.; Xu, J.; Wang, Y. 2013: Controllable synthesis of metal selenide heterostructures mediated by Ag2Se nanocrystals acting as catalysts. Nanoscale 5(20): 9714-9719
Li, Y.-S.; Bux, H.; Feldhoff, A.; Li, G.-L.; Yang, W.-S.; Caro, J.ür. 2010: Controllable synthesis of metal-organic frameworks: from MOF nanorods to oriented MOF membranes. Advanced Materials 22(30): 3322-3326
Xu, C.; Sun, J.; Gao, L. 2012: Controllable synthesis of monodisperse ultrathin SnO₂ nanorods on nitrogen-doped graphene and its ultrahigh lithium storage properties. Nanoscale 4(17): 5425-5430
Li, L.; Sun, J.; Li, X.; Zhang, Y.; Wang, Z.; Wang, C.; Dai, J.; Wang, Q. 2012: Controllable synthesis of monodispersed silver nanoparticles as standards for quantitative assessment of their cytotoxicity. Biomaterials 33(6): 1714-1721
Wang, Q.; Jia, W.; Liu, B.; Zhao, W.; Li, C.; Zhang, J.; Xu, G. 2012: Controllable synthesis of nearly monodisperse spherical aggregates of CeO2 nanocrystals and their catalytic activity for HCHO oxidation. Chemistry An Asian Journal 7(10): 2258-2267
Chen, L.; Yan, L.; Li, Q.; Wang, C.; Chen, S. 2010: Controllable synthesis of new polymerizable macrosurfactants via CCTP and RAFT techniques and investigation of their performance in emulsion polymerization. Langmuir 26(3): 1724-1733
Dong, L.; Chu, Y.; Sun, W. 2008: Controllable synthesis of nickel hydroxide and porous nickel oxide nanostructures with different morphologies. Chemistry 14(16): 5064-5072
Li, Y.; Guo, K.; Li, J.; Dong, X.; Yuan, T.; Li, X.; Yang, H. 2014: Controllable synthesis of ordered mesoporous NiFe₂O₄ with tunable pore structure as a bifunctional catalyst for Li-O₂ batteries. Acs Applied Materials and Interfaces 6(23): 20949-20957
Wang, S.; Gao, Q.; Zhang, Y.; Gao, J.; Sun, X.; Tang, Y. 2011: Controllable synthesis of organic-inorganic hybrid MoOx/polyaniline nanowires and nanotubes. Chemistry 17(5): 1465-1472
Ko, Y.H.; Leem, J.W.; Yu, J.S. 2011: Controllable synthesis of periodic flower-like ZnO nanostructures on Si subwavelength grating structures. Nanotechnology 22(20): 205604
Sun, D.; Zou, Q.; Wang, Y.; Wang, Y.; Jiang, W.; Li, F. 2014: Controllable synthesis of porous Fe3O4@ZnO sphere decorated graphene for extraordinary electromagnetic wave absorption. Nanoscale 6(12): 6557-6562
Zhang, S.; Ren, F.; Wu, W.; Zhou, J.; Xiao, X.; Sun, L.; Liu, Y.; Jiang, C. 2013: Controllable synthesis of recyclable core-shell γ-Fe2O3@SnO2 hollow nanoparticles with enhanced photocatalytic and gas sensing properties. Physical Chemistry Chemical Physics: Pccp 15(21): 8228-8236
Tang, A.; Wang, Y.; Ye, H.; Zhou, C.; Yang, C.; Li, X.; Peng, H.; Zhang, F.; Hou, Y.; Teng, F. 2013: Controllable synthesis of silver and silver sulfide nanocrystals via selective cleavage of chemical bonds. Nanotechnology 24(35): 355602
Cui, S.; Mao, S.; Wen, Z.; Chang, J.; Zhang, Y.; Chen, J. 2013: Controllable synthesis of silver nanoparticle-decorated reduced graphene oxide hybrids for ammonia detection. Analyst 138(10): 2877-2882
Song, C.; Kwon, T.; Han, J.-H.; Shandell, M.; Strano, M.S. 2009: Controllable synthesis of single-walled carbon nanotube framework membranes and capsules. Nano Letters 9(12): 4279-4284
Gui, X.; Lin, Z.; Zeng, Z.; Wang, K.; Wu, D.; Tang, Z. 2013: Controllable synthesis of spongy carbon nanotube blocks with tunable macro- and microstructures. Nanotechnology 24(8): 085705
Wang, H.; Wang, G.; Bao, P.; Yang, S.; Zhu, W.; Xie, X.; Zhang, W.-J. 2012: Controllable synthesis of submillimeter single-crystal monolayer graphene domains on copper foils by suppressing nucleation. Journal of the American Chemical Society 134(8): 3627-3630
Qiao, Y.; Chen, H.; Lin, Y.; Huang, J. 2011: Controllable synthesis of water-soluble gold nanoparticles and their applications in electrocatalysis and surface-enhanced Raman scattering. Langmuir 27(17): 11090-11097
Luo, Q.; Zeng, Y.; Chen, L.; Ma, C. 2014: Controllable synthesis of wurtzite Cu(2)ZnSnS(4) nanocrystals by hot-injection approach and growth mechanism studies. Chemistry An Asian Journal 9(8): 2309-2316
Choi, S.H.; Lee, J.-K.; Kang, Y.C. 2014: Controllable synthesis of yolk-shell-structured metal oxides with seven to ten components for finding materials with superior lithium storage properties. Nanoscale 6(21): 12421-12425
Hu, B.; Chen, S.-F.; Liu, S.-J.; Wu, Q.-S.; Yao, W.-T.; Yu, S.-H. 2008: Controllable synthesis of zinc-substituted alpha- and beta-nickel hydroxide nanostructures and their collective intrinsic properties. Chemistry 14(29): 8928-8938
Huang, X.; Lv, D.; Yue, H.; Attia, A.; Yang, Y. 2008: Controllable synthesis of α- and β-MnO(2): cationic effect on hydrothermal crystallization. Nanotechnology 19(22): 225606
Mozafari, M.; Moztarzadeh, F. 2010: Controllable synthesis, characterization and optical properties of colloidal PbS/gelatin core-shell nanocrystals. Journal of Colloid and Interface Science 351(2): 442-448
Wu, W.; Zhang, S.; Xiao, X.; Zhou, J.; Ren, F.; Sun, L.; Jiang, C. 2012: Controllable synthesis, magnetic properties, and enhanced photocatalytic activity of spindlelike mesoporous α-Fe(2)O(3)/ZnO core-shell heterostructures. Acs Applied Materials and Interfaces 4(7): 3602-3609
Zhan, Y.; Yang, X.; Meng, F.; Wei, J.; Zhao, R.; Liu, X. 2011: Controllable synthesis, magnetism and solubility enhancement of graphene nanosheets/magnetite hybrid material by covalent bonding. Journal of Colloid and Interface Science 363(1): 98-104
Song, J.; Wang, L.; Shao, G.; Shi, M.; Ma, Z.; Wang, G.; Song, W.; Liu, S.; Wang, C. 2014: Controllable synthesis, morphology evolution and electrochemical properties of LiFePO4 cathode materials for Li-ion batteries. Physical Chemistry Chemical Physics: Pccp 16(17): 7728-7733
Titov, A.V.; Wang, B.; Sint, K.; Král, P. 2010: Controllable synthetic molecular channels: biomimetic ammonia switch. Journal of Physical Chemistry. B 114(2): 1174-1179
Shelton, A.H.; Sazanovich, I.V.; Weinstein, J.A.; Ward, M.D. 2012: Controllable three-component luminescence from a 1,8-naphthalimide/Eu(III) complex: white light emission from a single molecule. Chemical Communications 48(22): 2749-2751
Bai, S.; Liu, S.; Zhang, C.; Xu, W.; Lu, Q.; Han, H.; Kaplan, D.L.; Zhu, H. 2013: Controllable transition of silk fibroin nanostructures: an insight into in vitro silk self-assembly process. Acta Biomaterialia 9(8): 7806-7813
Bret, B.P.; Couto, N.J.; Amaro, M.; Nunes-Pereira, E.J.; Belsley, M. 2009: Controllable transport mean free path of light in xerogel matrixes embedded with polystyrene spheres. Optics Express 17(9): 6975-6981
Lu, H.; Nie, X.; Wu, F.; Zhou, X.; Kou, J.; Xu, Y.; Liu, Y. 2012: Controllable transport of water through nanochannel by rachet-like mechanism. Journal of Chemical Physics 136(17): 174511
Xie, Y.; Guo, S.; Guo, C.; He, M.; Chen, D.; Ji, Y.; Chen, Z.; Wu, X.; Liu, Q.; Xie, S. 2013: Controllable two-stage droplet evaporation method and its nanoparticle self-assembly mechanism. Langmuir 29(21): 6232-6241
Zhang, H.; Shen, J.; Liu, Z.; Bai, Y.; An, W.; Hao, A. 2009: Controllable vesicles based on unconventional cyclodextrin inclusion complexes. Carbohydrate Research 344(15): 2028-2035
Huang, Y.; Chen, H.; Wu, J.; Feng, X. 2014: Controllable wrinkle configurations by soft micro-patterns to enhance the stretchability of Si ribbons. Soft Matter 10(15): 2559-2566
Tian, Y.F.; Hudalla, G.A.; Han, H.; Collier, J.H. 2013: Controllably degradable β-sheet nanofibers and gels from self-assembling depsipeptides. Biomaterials Science 1(10)
Bai, Y.; Zhang, W.; Zhang, Z.; Zhou, J.; Wang, X.; Wang, C.; Huang, W.; Jiang, J.; Xiong, Y. 2014: Controllably interfacing with metal: a strategy for enhancing CO oxidation on oxide catalysts by surface polarization. Journal of the American Chemical Society 136(42): 14650-14653
Teng, W.; Wang, Q.; Chen, Y.; Huang, H. 2014: Controllably local gene delivery mediated by polyelectrolyte multilayer films assembled from gene-loaded nanopolymersomes and hyaluronic acid. International Journal of Nanomedicine 9: 5013-5024
Han, C.; Zhang, Z.; Xu, H.; Li, J.; Xie, G.; Chen, R.; Zhao, Y.; Huang, W. 2012: Controllably tuning excited-state energy in ternary hosts for ultralow-voltage-driven blue electrophosphorescence. Angewandte Chemie 51(40): 10104-10108
Lamarre, S.S.; Lemay, C.; Labrecque, C.; Ritcey, A.M. 2013: Controlled 2D organization of gold nanoparticles in block copolymer monolayers. Langmuir 29(34): 10891-10898
Westman, A.; Linton, S.J.; Ohrvik, J.; Wahlén, P.; Theorell, Töres.; Leppert, J. 2010: Controlled 3-year follow-up of a multidisciplinary pain rehabilitation program in primary health care. Disability and Rehabilitation 32(4): 307-316
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Castañeda, C.A.; Liu, J.; Kashyap, T.R.; Singh, R.K.; Fushman, D.; Cropp, T.A. 2011: Controlled enzymatic synthesis of natural-linkage, defined-length polyubiquitin chains using lysines with removable protecting groups. Chemical Communications 47(7): 2026-2028
Marchenko, I.; Yashchenok, A.; Borodina, T.; Bukreeva, T.; Konrad, M.; Möhwald, H.; Skirtach, A. 2012: Controlled enzyme-catalyzed degradation of polymeric capsules templated on CaCO₃: influence of the number of LbL layers, conditions of degradation, and disassembly of multicompartments. Journal of Controlled Release: Official Journal of the Controlled Release Society 162(3): 599-605
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