Electrooxidative Divergent Halocyclizations of Ambident Amides

M Minki Jeon (Department of Chemistry Chungbuk National University Chungcheongbuk‐do 28644 Republic of Korea) D Debajit Maiti (Department of Chemistry Chungbuk National University Chungcheongbuk‐do 28644 Republic of Korea) G Geon Kang (Department of Chemistry Chungbuk National University Chungcheongbuk‐do 28644 Republic of Korea) J Jinwoo Kim I Isaac Choi

Abstract

Abstract Herein, we report a divergent electrochemical halocyclization of ambident amides that enables selective formation of either C–O or C–N bonds. Unique chemoselectivity is governed by anodic oxidation conditions, in which haliranium‐mediated C–O bond formation proceeds via chloride oxidation, while amidyl radicals guide C–N bond formation under basic conditions. Various approaches to understanding reaction mechanisms have been performed, including cyclic voltammetric analyses, experimental kinetic studies, and in silico experimentation. The developed electrooxidative synthetic method offers broad functional group tolerance, highlighting electrochemistry as a powerful tool for selective halocyclization.

Article Details

Volume / Issue Vol. 65, Issue 2
Published January 09, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (5)

M

Minki Jeon

Department of Chemistry Chungbuk National University Chungcheongbuk‐do 28644 Republic of Korea

D

Debajit Maiti

Department of Chemistry Chungbuk National University Chungcheongbuk‐do 28644 Republic of Korea

G

Geon Kang

Department of Chemistry Chungbuk National University Chungcheongbuk‐do 28644 Republic of Korea

J

Jinwoo Kim

I

Isaac Choi