2‐CF <sub>2</sub> H(D)‐Imidazolium Salts: A Reagent Platform for Bis(Deuterio)Difluoromethylation of Alkenes Under Copper/Photoredox Dual Catalysis

Y Yazhou Zhang (New Cornerstone Science Laboratory, State Key Laboratory for Physical Chemistry of Solid Surfaces, Collaborative Innovation Center of Chemistry for Energy Materials, and National & Local Joint Engineering Research Center of Preparation Technology of Nanomaterials, College of Chemistry and Chemical Engineering) Y Yuhao Cai H Hongbo Ouyang (Center For Supramolecular Chemistry &amp; Catalysis Department of Chemistry College of Science Shanghai University Shanghai China) T Ting Cheng (Department of Biological Science and Technology, Center for Intelligent Drug Systems and Smart Biodevices (IDS2B)) Z Zhikun Zhang

Abstract

ABSTRACT The difluoromethyl group (–CF 2 H) has emerged as a privileged motif in modern drug design due to its ability to modulate lipophilicity and metabolic stability. Its deuterated analogue, the (deuterio)difluoromethyl group (–CF 2 D), offers further potential for enhancing metabolic stability and enabling distinct intermolecular interactions. Molecules bearing vicinal difluoromethyl or (deuterio)difluoromethyl groups can serve as potential bioisosteres of pharmacologically important vicinal diols and amino alcohols. Consequently, the direct and simultaneous installation of two difluoromethyl and (deuterio)difluoromethyl groups across alkenes represents an important synthetic target. To address current limitations, we herein introduced 2‐CF 2 H(D)‐imidazolium salts as a robust, user‐friendly reagent platform for both bis(difluoromethylation) and bis(deuterio)difluoromethylation of a broad range of alkenes, including aryl‐substituted and less reactive alkyl derivatives. The synthetic utility of this method is demonstrated through late‐stage functionalization and gram‐scale synthesis of complex molecules. Preliminary mechanistic studies revealed their distinct behavior in copper and photoredox catalysis. As such, this work establishes these reagents as a versatile platform for the simultaneous formation of C─CF 2 H and C─CF 2 D bonds, representing a significant advance in the synthesis of valuable fluorinated and deuterated compounds.

Article Details

Volume / Issue Vol. 1, Issue 1
Published August 05, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (5)

Y

Yazhou Zhang

New Cornerstone Science Laboratory, State Key Laboratory for Physical Chemistry of Solid Surfaces, Collaborative Innovation Center of Chemistry for Energy Materials, and National & Local Joint Engineering Research Center of Preparation Technology of Nanomaterials, College of Chemistry and Chemical Engineering

Y

Yuhao Cai

H

Hongbo Ouyang

Center For Supramolecular Chemistry &amp; Catalysis Department of Chemistry College of Science Shanghai University Shanghai China

T

Ting Cheng

Department of Biological Science and Technology, Center for Intelligent Drug Systems and Smart Biodevices (IDS2B)

Z

Zhikun Zhang