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不对称 C1-取代氧杂苯并降蒈二烯的化学。

Chemistry of Unsymmetrical C1-Substituted Oxabenzonorbornadienes.

机构信息

Guelph-Waterloo Center for Graduate Work in Chemistry and Biochemistry, Department of Chemistry, University of Guelph, Guelph, Ontario, N1G 2W1, Canada.

出版信息

Curr Org Synth. 2021;18(5):446-474. doi: 10.2174/1570179417666210105121115.

Abstract

Oxabenzonorbornadiene (OBD) is a useful synthetic intermediate, which can be readily activated by transition metal complexes with great face selectivity due to its dual-faced nature and intrinsic angle strain on the alkene. To date, the understanding of transition-metal catalyzed reactions of OBD itself has burgeoned; however, this has not been the case for unsymmetrical OBDs. Throughout the development of these reactions, the nature of C1-substituent has proven to have a profound effect on both the reactivity and selectivity of the outcome of the reaction. Upon substitution, different modes of reactivity arise, contributing to the possibility of multiple stereo-, regio-, and in extreme cases, constitutional isomers, which can provide unique means of constructing a variety of synthetically useful cyclic frameworks. To maximize selectivity, an understanding of bridgehead substituent effects is crucial. To that end, this review outlines hitherto reported examples of bridgehead substituent effects on the chemistry of unsymmetrical C1-substituted OBDs.

摘要

氧化茚并降冰片二烯(OBD)是一种有用的合成中间体,由于其双面性和烯烃固有的角应变,它可以很容易地被过渡金属配合物激活,具有很大的面选择性。迄今为止,人们对 OBD 自身的过渡金属催化反应的理解已经迅速发展;然而,对于不对称的 OBD 情况并非如此。在这些反应的发展过程中,C1-取代基的性质已被证明对反应的反应性和选择性都有深远的影响。取代后,会出现不同的反应模式,从而有可能产生多种立体、区域异构体,甚至在极端情况下产生构象异构体,这为构建各种具有合成用途的环状骨架提供了独特的方法。为了最大限度地提高选择性,了解桥头取代基效应至关重要。为此,本文综述了迄今报道的不对称 C1-取代 OBD 化学中桥头取代基效应的实例。

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