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通过应用密度泛函理论验证M-C/H-C键焓关系

Validation of the M-C/H-C bond enthalpy relationship through application of density functional theory.

作者信息

Clot Eric, Mégret Claire, Eisenstein Odile, Perutz Robin N

机构信息

LSDSMS (UMR 5636, CNRS-UM2), Institut Charles Gerhardt, Université Montpellier 2, 34095 Montpellier Cedex 5, France.

出版信息

J Am Chem Soc. 2006 Jun 28;128(25):8350-7. doi: 10.1021/ja061803a.

Abstract

Density functional theory has been used to calculate H-C and M-C bond dissociation enthalpies in order to evaluate the feasibility of correlating relative M-C bond enthalpies Delta H(M-C)rel with H-C bond enthalpies Delta H(H-C) via computational methods. This approach has been tested against two experimental correlations: a study of (a) Rh(H)(R)(Tp')(CNCH2CMe3) [R = hydrocarbyl, Tp' = HB(3,5-dimethylpyrazolyl)3] (Wick, D. D.; Jones, W. D. Organometallics 1999, 18, 495) and (b) Ti(R)(silox)2(NHSit-Bu3) (silox = OSit-Bu3) (Bennett, J. L.; Wolczanski, P. T. J. Am. Chem. Soc. 1997, 119, 10696). We show that the observation that M-C bond enthalpies increase more rapidly with different substituents than H-C bond enthalpies is reproduced by theory. Quantitative slopes of the correlation lines are reproduced within 4% of the experimental values with a B3PW91 functional and with very similar correlation coefficients. Absolute bond enthalpies are reproduced within 6% for H-C bonds, and relative bond enthalpies for M-C bonds are reproduced within 30 kJ mol(-1) for Rh-C bonds and within 19 kJ mol(-1) for Ti-C bonds. Values are also calculated with the BP86 functional.

摘要

密度泛函理论已被用于计算H-C和M-C键的解离焓,以便通过计算方法评估将相对M-C键焓ΔH(M-C)rel与H-C键焓ΔH(H-C)相关联的可行性。这种方法已针对两种实验相关性进行了测试:(a) Rh(H)(R)(Tp')(CNCH2CMe3) [R = 烃基,Tp' = HB(3,5-二甲基吡唑基)3] (Wick, D. D.; Jones, W. D. Organometallics 1999, 18, 495) 和 (b) Ti(R)(silox)2(NHSit-Bu3) (silox = OSit-Bu3) (Bennett, J. L.; Wolczanski, P. T. J. Am. Chem. Soc. 1997, 119, 10696)。我们表明,理论再现了M-C键焓随不同取代基的增加比H-C键焓增加更快的观察结果。使用B3PW91泛函时,相关线的定量斜率在实验值的4%以内再现,且相关系数非常相似。H-C键的绝对键焓再现误差在6%以内,Rh-C键的M-C键相对键焓再现误差在30 kJ mol⁻¹以内,Ti-C键的再现误差在19 kJ mol⁻¹以内。还使用BP86泛函计算了数值。

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