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半环戊二烯酮Cope重排中的电子-核运动:始终同步吗?

Electron-Nuclear Motion in the Cope Rearrangement of Semibullvalene: Ever Synchronous?

作者信息

Bredtmann Timm, Paulus Beate

机构信息

Institut für Chemie und Biochemie, Freie Universität Berlin , Takustr. 3, 14195 Berlin, Germany.

出版信息

J Chem Theory Comput. 2013 Jul 9;9(7):3026-34. doi: 10.1021/ct400318z. Epub 2013 Jun 4.

Abstract

The effect of nuclear motion on the synchronicity of the pincer motion type electronic rearrangement associated with bond making and bond breaking and vice versa is investigated for the degenerate Cope rearrangement of semibullvalene using a time-independent quantum chemical approach. We find that distinct paths along the potential energy surface corresponding to synchronous nuclear rearrangement involve asynchronous electronic fluxes out of the old and into the new bond while synchronous electronic fluxes entail asynchronous nuclear rearrangement. In order to demonstrate the robustness of the results, various high-level quantum chemical methods including full structure optimizations up to second order multireference perturbation theory using triple-ζ basis sets (RS2/cc-pVTZ), which are subsequently refined at the RS3/cc-pVTZ and MRCI+Dav/cc-pVTZ levels of theory, are used for solving the electronic Schrödinger equation. These benchmark results extend previous quantum chemical data for the degenerate Cope rearrangement of semibullvalene and are tested against lower level methods (e.g., density functional theory calculations using the B3LYP and B3PW91 functionals).

摘要

采用与时间无关的量子化学方法,研究了核运动对半环戊二烯简并Cope重排中与成键和断键相关的钳形运动型电子重排同步性的影响,反之亦然。我们发现,沿着势能面,对应于同步核重排的不同路径涉及旧键到新键的异步电子通量,而同步电子通量则需要异步核重排。为了证明结果的稳健性,使用了各种高级量子化学方法,包括使用三重ζ基组(RS2/cc-pVTZ)进行直至二阶多参考扰动理论的全结构优化,随后在RS3/cc-pVTZ和MRCI+Dav/cc-pVTZ理论水平上进行细化,以求解电子薛定谔方程。这些基准结果扩展了之前关于半环戊二烯简并Cope重排的量子化学数据,并与较低水平的方法(例如使用B3LYP和B3PW91泛函的密度泛函理论计算)进行了对比测试。

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