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多取代双环[1.1.0]丁烷的合成与应用。

Synthesis and Applications of Polysubstituted Bicyclo[1.1.0]butanes.

机构信息

Chemistry Research Laboratory, University of Oxford, 12 Mansfield Road, Oxford, OX1 3TA, U.K.

出版信息

J Am Chem Soc. 2021 Dec 22;143(50):21246-21251. doi: 10.1021/jacs.1c11244. Epub 2021 Dec 14.

Abstract

Bicyclo[1.1.0]butanes (BCBs) are valuable substrates in the "strain release" synthesis of polysubstituted four-membered ring systems, with applications including bioconjugation agents. The introduction of substituents onto the BCB bridges is challenging due to limitations in current methods for the preparation of this bicyclic scaffold, typically necessitating linear syntheses with limited functional group tolerance and/or substituent scope. Here, we report the synthesis of tri- and tetrasubstituted BCBs via directed metalation of readily accessed BCB amides; this straightforward "late stage" approach generates a wide variety of bridge-substituted BCBs that can be easily converted into other useful small ring building blocks. Access to a monodeuterated BCB afforded unprecedented insight into the mechanism of dihalocarbene insertion into BCBs to afford bicyclo[1.1.1]pentanes (BCPs).

摘要

双环[1.1.0]丁烷(BCBs)是“应变释放”合成多取代四元环体系的有价值的底物,其应用包括生物缀合试剂。由于目前制备这种双环支架的方法存在局限性,因此在 BCB 桥上引入取代基具有挑战性,通常需要具有有限官能团容忍度和/或取代基范围的线性合成。在这里,我们通过容易获得的 BCB 酰胺的定向金属化报告了三取代和四取代 BCB 的合成; 这种直接的“后期”方法生成了各种各样的桥取代 BCB,可以很容易地转化为其他有用的小环构建块。获得单氘代 BCB 为二卤卡宾插入 BCB 以获得双环[1.1.1]戊烷(BCPs)的机制提供了前所未有的见解。

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