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通过与2-氮杂烯丙基阴离子、氧化还原活性酯和烯烃进行自由基偶联反应生成的α-支链胺。

α-Branched amines through radical coupling with 2-azaallyl anions, redox active esters and alkenes.

作者信息

Duan Shengzu, Zi Yujin, Wang Lingling, Cong Jielun, Chen Wen, Li Minyan, Zhang Hongbin, Yang Xiaodong, Walsh Patrick J

机构信息

Key Laboratory of Medicinal Chemistry for Natural Resources, Ministry of Education, Yunnan Province Center for Research & Development of Natural Products, School of Chemical Science and Technology, Yunnan University Kunming 650091 P. R. China

Roy and Diana Vagelos Laboratories Penn/Merck Laboratory for High-Throughput Experimentation Department of Chemistry, University of Pennsylvania 231 South 34th Street Philadelphia PA USA

出版信息

Chem Sci. 2022 Mar 3;13(13):3740-3747. doi: 10.1039/d2sc00500j. eCollection 2022 Mar 30.

Abstract

α-Branched amines are fundamental building blocks in a variety of natural products and pharmaceuticals. Herein is reported a unique cascade reaction that enables the preparation of α-branched amines bearing aryl or alkyl groups at the β- or γ-positions. The cascade is initiated by reduction of redox active esters to alkyl radicals. The resulting alkyl radicals are trapped by styrene derivatives, leading to benzylic radicals. The persistent 2-azaallyl radicals and benzylic radicals are proposed to undergo a radical-radical coupling leading to functionalized amine products. Evidence is provided that the role of the nickel catalyst is to promote formation of the alkyl radical from the redox active ester and not promote the C-C bond formation. The synthetic method introduced herein tolerates a variety of imines and redox active esters, allowing for efficient construction of amine building blocks.

摘要

α-支链胺是多种天然产物和药物中的基本结构单元。本文报道了一种独特的级联反应,该反应能够制备在β-或γ-位带有芳基或烷基的α-支链胺。该级联反应由氧化还原活性酯还原为烷基自由基引发。生成的烷基自由基被苯乙烯衍生物捕获,生成苄基自由基。据推测,持久性的2-氮杂烯丙基自由基和苄基自由基会发生自由基-自由基偶联,生成官能化胺产物。有证据表明,镍催化剂的作用是促进氧化还原活性酯形成烷基自由基,而不是促进碳-碳键的形成。本文介绍的合成方法能够耐受多种亚胺和氧化还原活性酯,可高效构建胺结构单元。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d010/8966660/fa2e1c837f86/d2sc00500j-s1.jpg

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