Light-driven radical copper-catalyzed allylic amination via allylic copper intermediates

H Hang Luo (College of Materials Science and Engineering) Y Yupeng Yang Y Yunpeng Ma F Fangnian Yu M Min Gao S Shizhao Xu H Huawei Ju Y Yang Li K Kaifeng Wu (State Key Laboratory of Chemical Reaction Dynamics and New Cornerstone Science Laboratory) L Luqing Lin

Abstract

Abstract The synthesis of allylic amines through an outer-sphere nucleophilic substitution mechanism involving electrophilic allyl copper(III) complexes with soft amines represents an uncharted territory in catalysis. This study introduces a radical-based approach for the generation of allylic copper(III) complexes, enabling the efficient synthesis of allylic amines in the presence of alkyl/aryl amines. Through copper photocatalysis, we demonstrate a radical-induced small-ring opening process that produces allylic amines featuring skipped double bonds, while simultaneously achieving highly regioselective 1,4-carboamination of 1,3-dienes with high E/Z selectivity. Mechanism studies substantiate the radical-mediated formation of allylic copper complexes and provide evidence for the involvement of outer-sphere nucleophilic substitution at allylic copper(III) complexes.

Article Details

Volume / Issue Vol. 16, Issue 1
Published November 26, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (10)

H

Hang Luo

College of Materials Science and Engineering

Y

Yupeng Yang

Y

Yunpeng Ma

F

Fangnian Yu

M

Min Gao

S

Shizhao Xu

H

Huawei Ju

Y

Yang Li

K

Kaifeng Wu

State Key Laboratory of Chemical Reaction Dynamics and New Cornerstone Science Laboratory

L

Luqing Lin