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Photocatalytic Radical Aroylation of Unactivated Alkenes: Pathway to β-Functionalized 1,4-, 1,6-, and 1,7-Diketones

delete2019-10-17
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S
Satavisha Sarkar
A
Arghya Banerjee
王遥 cover
王遥 (Wang Yao)
E
Eric V. Patterson
M
Ming‐Yu Ngai *
DOI:10.1021/acscatal.9b03570delete
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Abstract

Abstract

En 中文
We report the development of a photocatalytic strategy for the synthesis of beta-functionalized unsymmetrical 1,4-, 1,6-, and 1,7-diketones from aroyl chlorides and unactivated alkenes at room temperature. The mild reaction conditions not only tolerate a wide range of functional groups and structural moieties, but also enable migration of a variety of distal groups including (hetero)arenes, nitrile, aldehyde, oxime derivative, and alkene. The efficiency of chirality transfer, factors that control the distal-group migration, and synthesis of carbocycles and heterocycles from the diketones are also described. Mechanistic studies suggest a reaction pathway involving a photocatalytic radical aroylation of unactivated alkenes followed by a distal-group migration, oxidation, and deprotonation to afford the desired diketones.
Keywords:
unactivated alkenes
aroylation
1,n-diketones
migration
photoredox catalysis
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Journal

ACS Catalysis cover
ACS Catalysis
IF:
13.1
Papers:
1.6W
Citations:
15.0W

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S
state university of new york (suny) system
Scholars:
6.4W
Papers: 5.7W
Citations: 65
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