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计算证据表明 Sasaki 型(4 + 3)-环加成反应途径分岔。

Computational evidence for a reaction pathway bifurcation in Sasaki-type (4 + 3)-cycloadditions.

机构信息

School of Chemistry and Molecular Biosciences, The University of Queensland, St Lucia, Brisbane, QLD 4072, Australia.

出版信息

Org Biomol Chem. 2018 Mar 14;16(11):1828-1836. doi: 10.1039/c8ob00075a.

Abstract

The current report seeks to validate the existence of a post-transition state bifurcation in the Lewis acid-catalysed (4 + 3)-cycloaddition of butadiene and α-methoxy acrolein. Cycloaddition transition state (TS) structures are shown by intrinsic reaction coordinate (IRC) and potential energy surface (PES) scan calculations to connect directly to both (4 + 3)- and (4 + 2)-products. A second TS, a 1,2-sigmatropic shift which interconverts the products, was also located. Implicit solvent is observed to have a substantial effect of the course of the reaction, with the minimum energy path from the gas phase TS leading to (4 + 2)-product whereas the DCM solvent phase TS leads to (4 + 3)-product. On the basis of these data it is suggested that a number of previously reported (4 + 3)-cycloadditions may also possess reaction pathway bifurcations.

摘要

本报告旨在验证路易斯酸催化的丁二烯和α-甲氧基丙烯醛的(4 + 3)-环加成反应中存在过渡态后分支。通过内禀反应坐标(IRC)和势能面(PES)扫描计算,环加成过渡态(TS)结构被证明可以直接连接到(4 + 3)-和(4 + 2)-产物。还定位了第二个 TS,即 1,2-σ迁移重排,它可以互变产物。观察到隐溶剂对反应过程有很大的影响,从气相 TS 到(4 + 2)-产物的最低能量路径,而 DCM 溶剂相 TS 则导致(4 + 3)-产物。基于这些数据,我们认为以前报道的许多(4 + 3)-环加成反应可能也具有反应途径分支。

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