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涉及阳离子物种的有机反应中碳-碳键形成的量子化学拓扑分析。

A quantum chemical topological analysis of the C-C bond formation in organic reactions involving cationic species.

作者信息

Domingo Luis R, Pérez Patricia

机构信息

Departamento de Química Orgánica, Universidad de Valencia, Dr. Moliner 50, E-46100 Burjassot, Valencia, Spain.

出版信息

Phys Chem Chem Phys. 2014 Jul 21;16(27):14108-15. doi: 10.1039/c4cp01615g. Epub 2014 Jun 5.

Abstract

ELF topological analysis of the ionic Diels-Alder (I-DA) reaction between the N,N-dimethyliminium cation and cyclopentadiene (Cp) has been performed in order to characterise the C-C single bond formation. The C-C bond formation begins in the short range of 2.00-1.96 Åvia a C-to-C pseudoradical coupling between the most electrophilic center of the iminium cation and one of the two most nucleophilic centers of Cp. The electron density of the pseudoradical center generated at the most electrophilic carbon of the iminium cation comes mainly from the global charge transfer which takes place along the reaction. Analysis of the global reactivity indices indicates that the very high electrophilic character of the iminium cation is responsible for the negative activation energy found in the gas phase. On the other hand, the analysis of the radical P(k)(o) Parr functions of the iminium cation, and the nucleophilic P(k)(-) Parr functions of Cp makes the characterisation of the most favourable two-center interaction along the formation of the C-C single bond possible.

摘要

为了表征碳 - 碳单键的形成,对N,N - 二甲基亚胺阳离子与环戊二烯(Cp)之间的离子型狄尔斯 - 阿尔德(I - DA)反应进行了电子定域函数(ELF)拓扑分析。碳 - 碳键的形成始于2.00 - 1.96 Å的短程范围内,通过亚胺阳离子最亲电中心与Cp两个最亲核中心之一之间的碳到碳的准自由基偶联。在亚胺阳离子最亲电碳上产生的准自由基中心的电子密度主要来自于反应过程中发生的整体电荷转移。对整体反应性指数的分析表明,亚胺阳离子非常高的亲电特性是气相中发现负活化能的原因。另一方面,对亚胺阳离子的自由基P(k)(o)帕尔函数以及Cp的亲核P(k)(-)帕尔函数的分析使得沿着碳 - 碳单键形成过程中最有利的两中心相互作用的表征成为可能。

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