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路易斯酸催化剂对具有共同过渡态的狄尔斯-阿尔德反应和杂狄尔斯-阿尔德环加成反应的影响。

Effect of Lewis acid catalysts on Diels-Alder and hetero-Diels-Alder cycloadditions sharing a common transition state.

作者信息

Celebi-Olçüm Nihan, Ess Daniel H, Aviyente Viktorya, Houk K N

机构信息

Department of Chemistry and Biochemistry, University of California, Los Angeles, California 90095, USA.

出版信息

J Org Chem. 2008 Oct 3;73(19):7472-80. doi: 10.1021/jo801076t. Epub 2008 Sep 10.

Abstract

The thermal and Lewis acid catalyzed cycloadditions of beta,gamma-unsaturated alpha-ketophosphonates and nitroalkenes with cyclopentadiene have been explored by using density functional theory (DFT) methods. In both cases, only a single highly asynchronous bis-pericyclic transition state yielding both Diels-Alder and hetero-Diels-Alder cycloadducts could be located. Stepwise pathways were found to be higher in energy. On the potential energy surface, the bis-pericyclic cycloaddition transition state is followed by the Claisen rearrangement transition state. No intermediates were located between these transition states. Claisen rearrangement transition states are also highly asynchronous, but bond lengths are skewed in the opposite direction compared to the bis-pericyclic transition states. The relative positions of the bis-pericyclic and Claisen rearrangement transition states may control periselectivity due to the shape of the potential energy surface and corresponding dynamical influences. Inspection of the thermal potential energy surface (PES) indicates that a majority of downhill paths after the bis-pericyclic transition state lead to the Diels-Alder cycloadducts, whereas a smaller number of downhill paths reach the hetero-Diels-Alder products with no intervening energy barrier. Lewis acid catalysts alter the shape of the surface by shifting the cycloaddition and the Claisen rearrangement transition states in opposite directions. This topographical change qualitatively affects the branching ratio after the bis-pericyclic transition state and ultimately reverses the periselectivity of the cycloaddition giving a preference for hetero-Diels-Alder cycloadducts.

摘要

利用密度泛函理论(DFT)方法研究了β,γ-不饱和α-酮膦酸酯和硝基烯烃与环戊二烯的热催化和路易斯酸催化环加成反应。在这两种情况下,只能找到一个单一的高度异步双周环过渡态,它能同时生成狄尔斯-阿尔德(Diels-Alder)和杂狄尔斯-阿尔德(hetero-Diels-Alder)环加成产物。发现分步反应途径的能量更高。在势能面上,双周环环加成过渡态之后是克莱森重排(Claisen rearrangement)过渡态。在这些过渡态之间没有找到中间体。克莱森重排过渡态也高度异步,但与双周环过渡态相比,键长的扭曲方向相反。由于势能面的形状和相应的动力学影响,双周环和克莱森重排过渡态的相对位置可能控制周环选择性。对热势能面(PES)的研究表明,双周环过渡态之后的大多数下坡路径通向狄尔斯-阿尔德环加成产物,而较少数量的下坡路径在没有中间能垒的情况下到达杂狄尔斯-阿尔德产物。路易斯酸催化剂通过使环加成和克莱森重排过渡态向相反方向移动来改变表面形状。这种地形变化定性地影响双周环过渡态之后的分支比,并最终逆转环加成的周环选择性,使得杂狄尔斯-阿尔德环加成产物更受青睐。

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