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用于构建多官能团连接体的烯烃的三组分光化学1,2,5-三官能化反应

Three-Component Photochemical 1,2,5-Trifunctionalizations of Alkenes toward Densely Functionalized Lynchpins.

作者信息

Paulus Fritz, Stein Colin, Heusel Corinna, Stoffels Tobias J, Daniliuc Constantin G, Glorius Frank

机构信息

Organisch-Chemisches Institut, Westfälische Wilhelms-Universität Münster, Corrensstraße 36, 48149 Münster, Germany.

出版信息

J Am Chem Soc. 2023 Nov 1;145(43):23814-23823. doi: 10.1021/jacs.3c08898. Epub 2023 Oct 18.

Abstract

Radical remote 1,-difunctionalization reactions ( > 2) of alkenes are powerful tools to efficiently introduce functional groups with selected distances into target molecules. Among these reactions, 1,5-difunctionalizations are an important subclass, leading to sought-after scaffolds, but typically suffer from tailored starting materials and strict limitations for the formed functional group in 2-position. Seeking to address these issues and to make radical 1,5-difunctionalizations of alkenes more applicable, we report a novel three-component 1,2,5-trifunctionalization reaction between imine-based bifunctional reagents and two distinct alkenes, driven by visible light energy transfer-catalysis. Key to achieving this selective one-step installation of three different functional groups via the choreographed formation of four bonds was the utilization of a 1,2-boron shift and the rigorous capitalization of radical polarities and stabilities. Thorough mechanistic studies were carried out, and the synthetic utility of the obtained products was demonstrated by various downstream modifications. Notably, in addition to the functionalization of individual functional groups, their interplay gave rise to a unique array of cyclic products.

摘要

烯烃的自由基远程1, -双官能化反应(> 2)是将具有特定距离的官能团高效引入目标分子的有力工具。在这些反应中,1,5 - 双官能化是一个重要的子类,可生成人们所追求的骨架结构,但通常需要特定的起始原料,并且对2 - 位形成的官能团有严格限制。为了解决这些问题并使烯烃的自由基1,5 - 双官能化反应更具适用性,我们报道了一种基于亚胺的双官能试剂与两种不同烯烃之间的新型三组分1,2,5 - 三官能化反应,该反应由可见光能量转移催化驱动。通过精心设计形成四个键来实现三种不同官能团的选择性一步安装的关键在于利用1,2 - 硼迁移以及严格利用自由基的极性和稳定性。我们进行了深入的机理研究,并通过各种下游修饰证明了所得产物的合成效用。值得注意的是,除了各个官能团的官能化之外,它们之间的相互作用还产生了一系列独特的环状产物。

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