Br‐Mediated Pd Catalysis Promotes Intermediates Stabilization and Coupling for Anodic Electrosynthesis of Dimethyl Carbonate

J Jian Fang G Guo‐Yi Duan (Beijing Key Laboratory of Green Hydrogen and Fuel Cells School of Chemistry and Chemical Engineering Beijing Institute of Technology Beijing China) Z Zhu‐Feng Yu (Beijing Key Laboratory of Green Hydrogen and Fuel Cells School of Chemistry and Chemical Engineering Beijing Institute of Technology Beijing China) X Xiao‐Qiang Li (Beijing Key Laboratory of Green Hydrogen and Fuel Cells School of Chemistry and Chemical Engineering Beijing Institute of Technology Beijing China) Y Yue Pan (Beijing National Laboratory for Condensed Matter Physics) B Bao‐Hua Xu (Beijing Key Laboratory of Green Hydrogen and Fuel Cells School of Chemistry and Chemical Engineering Beijing Institute of Technology Beijing China)

Abstract

ABSTRACT Electrosynthesis of dimethyl carbonate (DMC) from methanol (MeOH) and CO on a Pd‐based catalyst has shown high selectivity; however, most of the corresponding total current densities ( j total ) are still too small to support industrial applications. In this study, we built a Pd‐Br electrocatalytic system in a flow cell to produce DMC with both high selectivity and high reaction rate. Remarkably, up to 89.4% of the DMC Faradaic efficiency (FE DMC ) was achieved at j total of 100 mA cm −2 . Mechanism studies suggest that the in situ generation of active sites with a proper distribution of Br‐modified Pd(I) sites and PdBr 2 for the coadsorption of CO and MeOH is vital for this reactivity. Under Br mediation, the excessive formation of high‐valence Pd species was inhibited, while the DMC formation was substantially facilitated in thermodynamic terms. These findings shed vital methodological and mechanistic insights for developing efficacious electrocatalytic systems for DMC synthesis.

Article Details

Volume / Issue Vol. 65, Issue 30
Published July 20, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (6)

J

Jian Fang

G

Guo‐Yi Duan

Beijing Key Laboratory of Green Hydrogen and Fuel Cells School of Chemistry and Chemical Engineering Beijing Institute of Technology Beijing China

Z

Zhu‐Feng Yu

Beijing Key Laboratory of Green Hydrogen and Fuel Cells School of Chemistry and Chemical Engineering Beijing Institute of Technology Beijing China

X

Xiao‐Qiang Li

Beijing Key Laboratory of Green Hydrogen and Fuel Cells School of Chemistry and Chemical Engineering Beijing Institute of Technology Beijing China

Y

Yue Pan

Beijing National Laboratory for Condensed Matter Physics

B

Bao‐Hua Xu

Beijing Key Laboratory of Green Hydrogen and Fuel Cells School of Chemistry and Chemical Engineering Beijing Institute of Technology Beijing China