Angewandte Chemie - International Edition, volume 60, issue 4, pages 2160-2164
Copper‐Catalyzed Asymmetric Coupling of Allenyl Radicals with Terminal Alkynes to Access Tetrasubstituted Allenes
Xiao-Yang Dong
1
,
Tian Ya Zhan
1
,
Sheng Peng Jiang
1
,
Xiao-dong Liu
1
,
Liu Ye
2
,
Zhong-Liang Li
2
,
Qiang‐Shuai Gu
2
,
Xin-Yuan Liu
1
Publication type: Journal Article
Publication date: 2020-11-27
scimago Q1
SJR: 5.300
CiteScore: 26.6
Impact factor: 16.1
ISSN: 14337851, 15213773
General Chemistry
Catalysis
Abstract
In contrast to the wealth of asymmetric transformations for generating central chirality from alkyl radicals, the enantiocontrol over the allenyl radicals for forging axial chirality represents an uncharted domain. The challenge arises from the unique elongated linear configuration of the allenyl radicals that necessitates the stereo-differentiation of remote motifs away from the radical reaction site. We herein describe a copper-catalyzed asymmetric radical 1,4-carboalkynylation of 1,3-enynes via the coupling of allenyl radicals with terminal alkynes, providing diverse synthetically challenging tetrasubstituted chiral allenes. A chiral N,N,P-ligand is crucial for both the reaction initiation and the enantiocontrol over the highly reactive allenyl radicals. The reaction features a broad substrate scope, covering a variety of (hetero)aryl and alkyl alkynes and 1,3-enynes as well as radical precursors with excellent functional group tolerance.
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