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揭示分子电子密度理论中全局电子密度转移在极性有机反应速率中的关键作用。

Revealing the Critical Role of Global Electron Density Transfer in the Reaction Rate of Polar Organic Reactions within Molecular Electron Density Theory.

作者信息

Domingo Luis R, Ríos-Gutiérrez Mar

机构信息

Department of Organic Chemistry, University of Valencia, Dr. Moliner 50, 46100 Burjassot, Valencia, Spain.

出版信息

Molecules. 2024 Apr 19;29(8):1870. doi: 10.3390/molecules29081870.

Abstract

The critical role of global electron density transfer (GEDT) in increasing the reaction rate of polar organic reactions has been studied within the framework of Molecular Electron Density Theory (MEDT). To this end, the series of the polar Diels-Alder (P-DA) reactions of cyclopentadiene with cyanoethylene derivatives, for which experimental kinetic data are available, have been chosen. A complete linear correlation between the computed activation Gibbs free energies and the GEDT taking place at the polar transition state structures (TSs) is found; the higher the GEDT at the TS, the lower the activation Gibbs free energy. An interacting quantum atoms energy partitioning analysis allows for establishing a complete linear correlation between the electronic stabilization of the electrophilic ethylene frameworks and the GEDT taking place at the polar TSs. This finding supports Parr's proposal for the definition of the electrophilicity ω index. The present MEDT study establishes the critical role of the GEDT in the acceleration of polar reactions, since the electronic stabilization of the electrophilic framework with the electron density gain is greater than the destabilization of the nucleophilic one, making a net favorable electronic contribution to the decrease in the activation energy.

摘要

在分子电子密度理论(MEDT)框架内,研究了全局电子密度转移(GEDT)在提高极性有机反应速率中的关键作用。为此,选择了环戊二烯与氰基乙烯衍生物的一系列极性狄尔斯-阿尔德(P-DA)反应,这些反应有可用的实验动力学数据。发现在极性过渡态结构(TSs)处计算得到的活化吉布斯自由能与发生的GEDT之间存在完全线性相关性;TS处的GEDT越高,活化吉布斯自由能越低。相互作用量子原子能量划分分析允许在亲电乙烯骨架的电子稳定化与在极性TSs处发生的GEDT之间建立完全线性相关性。这一发现支持了帕尔关于亲电性ω指数定义的提议。目前的MEDT研究确立了GEDT在加速极性反应中的关键作用,因为亲电骨架通过电子密度增加实现的电子稳定化大于亲核骨架的去稳定化,从而对活化能的降低产生了净有利的电子贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/45ba/11053847/8ce55c31e6de/molecules-29-01870-sch001.jpg

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