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顺式双环[m.n.0]烯烃的电环化开环反应:反伍德沃德-霍夫曼探索

Electrocyclic ring opening of cis-bicyclo[m.n.0]alkenes: the anti-Woodward-Hoffmann quest.

作者信息

Silva López Carlos, Nieto Faza Olalla, de Lera Angel R

机构信息

Departamento de Química Orgánica, Facultad de Química, Universidade de Vigo, Lagoas Marcosende, 36310 Vigo, Galicia, Spain.

出版信息

Chemistry. 2007;13(17):5009-17. doi: 10.1002/chem.200601151.

Abstract

The dubbed anti-Woodward-Hoffmann ring-opening reaction of cis-bicyclo[4.2.0]oct-7-ene to yield cis,cis-cycloocta-1,3-diene has been intensively studied with robust, high-level computational methods. This reaction has been found to proceed through a conrotatory allowed pathway to afford cis,trans-cycloocta-1,3-diene followed by E to Z isomerization, instead of a disrotatory forbidden pathway, as suggested. Computational calculations of kinetic isotope effects are consistent with this interpretation and the experimental values. The study of lower bicyclic homologues with [3.2.0], [2.2.0] and [2.1.0] skeletons indicates the feasibility of a mechanistic change towards the anti-Woodward-Hoffmann disrotatory path. This is clearly favored for the ring opening of the highly strained cis-bicyclo[2.1.0]pent-2-ene and is highly competitive with the conrotatory path for cis-bicyclo[2.2.0]hex-2-ene. Therefore, the rearrangement of the smallest bicyclic cyclobutene is predicted computationally to be an anti-Woodward-Hoffmann disrotatory electrocyclic ring-opening reaction.

摘要

已使用强大的高级计算方法对顺式双环[4.2.0]辛 - 7 - 烯的模拟反伍德沃德 - 霍夫曼开环反应生成顺式,顺式 - 环辛 - 1,3 - 二烯进行了深入研究。已发现该反应通过一个允许的顺旋途径进行,生成顺式,反式 - 环辛 - 1,3 - 二烯,随后发生E到Z异构化,而不是如所建议的禁阻的对旋途径。动力学同位素效应的计算与该解释及实验值一致。对具有[3.2.0]、[2.2.0]和[2.1.0]骨架的较低双环同系物的研究表明,向反伍德沃德 - 霍夫曼对旋路径转变的机理是可行的。这对于高度应变的顺式双环[2.1.0]戊 - 2 - 烯的开环显然是有利的,并且与顺式双环[2.2.0]己 - 2 - 烯的顺旋路径具有高度竞争性。因此,通过计算预测最小的双环环丁烯的重排是一个反伍德沃德 - 霍夫曼对旋电环化开环反应。

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