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通过有机光氧化还原催化生成α-氨基甲酰基自由基及其烷基化反应

Generation and Alkylation of α-Carbamyl Radicals via Organic Photoredox Catalysis.

作者信息

McManus Joshua B, Onuska Nicholas P R, Nicewicz David A

机构信息

Department of Chemistry , University of North Carolina at Chapel Hill , Chapel Hill , North Carolina 27599-3290 , United States.

出版信息

J Am Chem Soc. 2018 Jul 25;140(29):9056-9060. doi: 10.1021/jacs.8b04890. Epub 2018 Jul 10.

Abstract

Strategies for the direct C-H functionalization of amines are valuable as these compounds comprise a number of pharmaceuticals, agrochemicals and natural products. This work describes a novel method for the C-H functionalization of carbamate-protected secondary amines via α-carbamyl radicals generated using photoredox catalysis. The use of the highly oxidizing, organic acridinium photoredox catalyst allows for direct oxidation of carbamate-protected amines with high redox potentials to give the corresponding carbamyl cation radical. Following deprotonation, the resultant open-shell species can be intercepted by a variety of Michael acceptors to give elaborate α-functionalized secondary amines. The reaction proceeds under mild conditions without the requirement of exogenous redox mediators or substrate prefunctionalization. Additionally, we were able to showcase the utility of this methodology through the enantioselective synthesis of the indolizidine alkaloid, (+)-monomorine I.

摘要

胺的直接C-H官能团化策略具有重要价值,因为这些化合物包含多种药物、农用化学品和天然产物。这项工作描述了一种通过光氧化还原催化产生的α-氨基甲酰基自由基对氨基甲酸酯保护的仲胺进行C-H官能团化的新方法。使用高氧化性的有机吖啶鎓光氧化还原催化剂可直接氧化具有高氧化还原电位的氨基甲酸酯保护的胺,生成相应的氨基甲酰阳离子自由基。去质子化后,生成的开壳物种可被多种迈克尔受体捕获,得到复杂的α-官能团化仲胺。该反应在温和条件下进行,无需外源氧化还原介质或底物预官能团化。此外,我们能够通过对吲哚里西啶生物碱(+)-单莫林I的对映选择性合成来展示该方法的实用性。

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