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周环反应中的电子量子流——以半环辛二烯的 Cope 重排反应为例。

Electronic quantum fluxes during pericyclic reactions exemplified for the Cope rearrangement of semibullvalene.

机构信息

Institut für Chemie und Biochemie, Freie Universität Berlin, 14195 Berlin, Germany.

出版信息

J Phys Chem B. 2011 May 12;115(18):5476-83. doi: 10.1021/jp110365g. Epub 2011 Jan 25.

Abstract

The outcome of a pericyclic reaction is typically represented by arrows in the Lewis structure of the reactant, symbolizing the net electron transfer. Quantum simulations can be used to interpret these arrows in terms of electronic fluxes between neighboring bonds. The fluxes are decomposed into contributions from electrons in so-called pericyclic orbitals, which account for the mutation of the Lewis structure for the reactant into that for the product, in other valence and in core orbitals. Series of time-integrated fluxes of pericyclic electrons can be assigned to the arrows, for example 0.09-0.23 electrons for Cope rearrangement of semibullvalene, with hysteresis-type time evolutions for 27.3 fs. This means asynchronous electronic fluxes during synchronous rearrangement of all the nuclei. These predictions should become observable by emerging techniques of femto- to attosecond time-resolved spectroscopy.

摘要

周环反应的产物通常用反应物的路易斯结构中的箭头表示,这些箭头表示净电子转移。量子模拟可以根据相邻键之间的电子流来解释这些箭头。这些流可以分解为所谓的周环轨道中电子的贡献,这些电子的贡献解释了路易斯结构反应物向产物的突变,也解释了价轨道和核心轨道中的突变。可以将一系列时积分的周环电子流分配给箭头,例如半轮烯的 Cope 重排有 0.09-0.23 个电子,其弛豫时间为 27.3fs。这意味着在所有核的同步重排过程中存在异步电子流。这些预测应该可以通过新兴的飞秒到阿秒时间分辨光谱技术来观察到。

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