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取代基对甲苯C-H键离解能的影响:密度泛函研究

Substituent Effects on the C-H Bond Dissociation Energy of Toluene. A Density Functional Study.

作者信息

Wu Yun-Dong, Wong Chui-Ling, Chan Kyle W. K., Ji Guo-Zhen, Jiang Xi-Kui

机构信息

Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences, 354 Feng Lin Lu, Shanghai, China.

出版信息

J Org Chem. 1996 Jan 26;61(2):746-750. doi: 10.1021/jo951212v.

Abstract

The bond dissociation energies of the benzylic C-H bond of a series of 16 para-substituted toluene compounds (p-X-C(6)H(4)CH(3)) have been calculated with the density functional method (BLYP/6-31G). The calculated substituent effects correlate well with experimental rates of dimerization of para-substituted alpha,beta,beta-trifluorostyrenes and rearrangement of methylenearylcyclopropanes. Both electron-donating and electron-withdrawing groups reduce the bond dissociation energy (BDE) of the benzylic C-H bond because both groups cause spin delocalization from the benzylic radical center. The calculated spin density variations at the benzylic radical centers correlate well with both the ESR hyperfine coupling constants determined by Arnold et al. and the calculated radical effects of the substituents. The relative radical stabilities are mainly determined by the spin delocalization effect of the substituents, and polar effect of the substituents are not important in the current situation. The ground state effect is also found to influence the C-H BDE.

摘要

采用密度泛函方法(BLYP/6-31G)计算了一系列16种对取代甲苯化合物(p-X-C(6)H(4)CH(3))的苄基C-H键的键离解能。计算得到的取代基效应与对取代的α,β,β-三氟苯乙烯二聚反应速率以及亚甲基芳基环丙烷重排的实验速率具有良好的相关性。供电子基团和吸电子基团都会降低苄基C-H键的键离解能(BDE),因为这两类基团都会导致苄基自由基中心的自旋离域。在苄基自由基中心计算得到的自旋密度变化与Arnold等人测定的ESR超精细偶合常数以及取代基的计算自由基效应都具有良好的相关性。相对自由基稳定性主要由取代基的自旋离域效应决定,在当前情况下取代基的极性效应并不重要。还发现基态效应会影响C-H键离解能。

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