Bond Dissociation Energy in Trifluoride Ion
Artau, A.; Nizzi, K.E.; Hill, B.T.; Sunderlin, L.S.; Wenthold, P.G.
Journal of the American Chemical Society 122(43): 10667-10670
2000
ISSN/ISBN: 0002-7863 DOI: 10.1021/ja001613e
Accession: 082157315
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References
Armstrong, G.T.; Marantz, S.; Coyle, C.F. 1959: Heat of Formation of Nitrogen Trifluoride And The N-F Bond Energy Journal of the American Chemical Society 81(14): 3798King, K.D.; Golden, D.M.; Benson, S.W. 1971: Kinetics and thermochemistry of the gas-phase bromination of bromoform. C-H bond dissociation energy in bromoform and the C-Br dissociation energy in carbon tetrabromide The Journal of Physical Chemistry 75(7): 987-989
Lu, L.; Jiang, P.; Gao, H. 2023: Observation of Continuum State Dissociation Enables the Determination of N2 Bond Dissociation Energy to Spectroscopic Accuracy Journal of Physical Chemistry Letters 14(49): 10974-10979
Melton, C.E. 1972: Formation of, by termolecular reactions, and bond dissociation energy, structure, and bond length for OH-H2O and O-H2O The Journal of Physical Chemistry 76(22): 3116-3120
Nazemi, A.; Cundari, T.R. 2017: Control of C-H Bond Activation by Mo-Oxo Complexes: pKa or Bond Dissociation Free Energy (BDFE)? Inorganic Chemistry 56(20): 12319-12327
Sahar, ; Bari, A; Irfan, M; Zara, Z; Eliasson, B; Ayub, K; Iqbal, J 2017: Benchmark study of bond dissociation energy of Si X (X F, Cl, Br, N, O, H and C) bond using density functional theory (DFT) Journal of Molecular Structure 1143: 8-19
Doncaster, A.M.; Walsh, R. 1977: Kinetic determination of the bond dissociation energy D(Me3Ge–H) and its implications for bond strengths in germanes J. Chem. Soc., Chem. Commun. 0(13): 446-447
Hop, C.E.C.A.; Mcmahon, T.B.; Willett, G.D. 1990: Determination of bond dissociation energies via energy-resolved collision induced dissociation in a Fourier transform ion cyclotron resonance spectrometer International Journal of Mass Spectrometry and Ion Processes 101(2-3): 191-208
Nash, C.S.; Bursten, B.E. 1999: Prediction of the Bond Lengths, Vibrational Frequencies, and Bond Dissociation Energy of Octahedral Seaborgium Hexacarbonyl, Sg(CO)6 Journal of the American Chemical Society 121(46): 10830-10831
Alfassi, Z.B.; Golden, D.M. 1973: Kinetics of the reaction of iodine with acrolein. Bond dissociation energy of the carbonyl carbon-hydrogen bond Journal of the American Chemical Society 95(2): 319-323
da Silva, G.; Chen, C.; Bozzelli, J.W. 2006: Bond dissociation energy of the phenol OH bond from ab initio calculations Chemical Physics Letters 424(1-3): 42-45
Basch, H; Aped, P; Hoz, S 1996: A Valence bond description of bond dissociation energy curves Molecular Physics 89(2): 331-354
Kishikawa, K.; Tokitoh, N.; Okazaki, R. 1998: The first Spectroscopic Observation of an Equilibrium between a Digermene and Germylenes and Experimental Determination of a Bond Dissociation Energy of a Ge-Ge Double Bond Chemistry Letters 27(3): 239-240
Benjamin, P. Hay; Richard, G. Finke 1988: Thermolysis of the CoC bond in adenosylcobalamin (coenzyme B12)IV. Products, kinetics and CoC bond dissociation energy studies in ethylene glycol Polyhedron 7(16-17): 1469-1481
Finke, R.G.; Smith, B.L.; Mayer, B.J.; Molinero, A.A. 1983: Cobalt-carbon bond homolysis and bond dissociation energy studies for the coenzyme B12 analogue RCo[C2(DO)(DOH)pn]I (R=PhCH2-, (CH3)3CCH2-) Inorganic Chemistry 22(25): 3677-3679
Bao, J.L.; Zhang, X.; Xu, X.; Truhlar, D.G. 2017: Predicting bond dissociation energy and bond length for bimetallic diatomic molecules: a challenge for electronic structure theory Physical Chemistry Chemical Physics: Pccp 19(8): 5839-5854
Rablen, P.R.; Hartwig, J.F.; Nolan, S.P. 1994: First Transition Metal-Boryl Bond Energy and Quantitation of Large Differences in Sequential Bond Dissociation Energies of Boranes Journal of the American Chemical Society 116(9): 4121-4122
Kosar, N.; Mahmood, T.; Ayub, K. 2017: Role of dispersion corrected hybrid GGA class in accurately calculating the bond dissociation energy of carbon halogen bond: a benchmark study Journal of Molecular Structure 1150: 447-458
Xu, D.; Shan, C.; Li, Y.; Qi, X.; Luo, X.; Bai, R.; Lan, Y. 2017: Bond dissociation energy controlled σ-bond metathesis in alkaline-earth-metal hydride catalyzed dehydrocoupling of amines and boranes: a theoretical study Inorganic Chemistry Frontiers 4(11): 1813-1820
Itadani, A.; Tanaka, M.; Mori, T.; Torigoe, H.; Kobayashi, H.; Kuroda, Y. 2010: Potential for Fixation of N2 at Room Temperature Utilizing a Copper-Ion-Exchanged MFI-Type Zeolite as an Adsorbent: Evaluation of the Bond Dissociation Energy of Adsorbed N≡N and the Bond Strength of the Cu+−N(≡N) Species The Journal of Physical Chemistry Letters 1(15): 2385-2390