Radical Borylation of Alkyl Bromides by Photoinduced Halogen‐Atom Transfer

C Cullen R. Schull (Department of Chemistry Northwestern University 2145 Sheridan Road Evanston IL 60208 USA) M Matthew J. McGill (Department of Chemistry) Ángel Renteria‐Gómez (Department of Chemistry and Biochemistry University of California 607 Charles E. Young Drive, East Los Angeles Los Angeles CA 90095 USA) P Poulami Mukherjee (Department of Chemistry and Biochemistry) S Samuel B. Tyndall (Department of Chemistry, Institute for Quantum Information Research and Engineering, and Center for Molecular Quantum Transduction) A Aaron H. Shoemaker (Department of Chemistry Northwestern University 2145 Sheridan Road Evanston IL 60208 USA) M Michael R. Wasielewski (Department of Chemistry and Institute for Quantum Information Science Research and Engineering (INQUIRE)) O Osvaldo Gutierrez (Department of Chemistry and Biochemistry) K Karl A. Scheidt (Department of Chemistry)

Abstract

Abstract Alkyl organoboron compounds are versatile synthons in organic synthesis, enabling rapid access to a variety of carbon─carbon and carbon‐heteroatom bonds. As such, strategies to efficiently access carbon‐boron bonds from simple chemical feedstocks are highly desirable. The radical borylation of alkyl bromides presents an attractive approach. However, the activation of alkyl bromides typically requires strong reductants or transition‐metal catalysts. Herein, we report a metal‐free radical borylation strategy of various alkyl bromides utilizing a photoinduced silyl radical to mediate a halogen‐atom transfer process. This method demonstrates broad utility and functional group tolerance among various primary, secondary, and tertiary unactivated alkyl bromides and can facilitate the functionalization of pharmaceutically relevant motifs. Mechanistic and computational studies support a radical‐chain pathway involving a silyl radical‐mediated halogen‐atom transfer.

Article Details

Volume / Issue Vol. 64, Issue 38
Published September 15, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (9)

C

Cullen R. Schull

Department of Chemistry Northwestern University 2145 Sheridan Road Evanston IL 60208 USA

M

Matthew J. McGill

Department of Chemistry

Ángel Renteria‐Gómez

Department of Chemistry and Biochemistry University of California 607 Charles E. Young Drive, East Los Angeles Los Angeles CA 90095 USA

P

Poulami Mukherjee

Department of Chemistry and Biochemistry

S

Samuel B. Tyndall

Department of Chemistry, Institute for Quantum Information Research and Engineering, and Center for Molecular Quantum Transduction

A

Aaron H. Shoemaker

Department of Chemistry Northwestern University 2145 Sheridan Road Evanston IL 60208 USA

M

Michael R. Wasielewski

Department of Chemistry and Institute for Quantum Information Science Research and Engineering (INQUIRE)

O

Osvaldo Gutierrez

Department of Chemistry and Biochemistry

K

Karl A. Scheidt

Department of Chemistry