Hydrogen‐Bond‐Regulated Formation of Ultrathin Conjugated Coordination Frameworks with Homogeneous Edge Effect Enhanced Oxygen Reduction Reaction

Z Zemin Sun (Faculty of Arts and Sciences Beijing Normal University Zhuhai 519087 P.R. China) Y Youxuan Ni L Lanke Luo (Faculty of Arts and Sciences Beijing Normal University Zhuhai 519087 P.R. China) H Haomin Jiang (Faculty of Arts and Sciences Beijing Normal University Zhuhai 519087 P.R. China) Y Yiting Han (Faculty of Arts and Sciences Beijing Normal University Zhuhai 519087 P.R. China) J Jiayue He Q Qiuhong Wan (Faculty of Arts and Sciences Beijing Normal University Zhuhai 519087 P.R. China) D Dingwei Cui (Faculty of Arts and Sciences Beijing Normal University Zhuhai 519087 P.R. China) F Fangye Zhang (Faculty of Arts and Sciences Beijing Normal University Zhuhai 519087 P.R. China) J Jiaoyang Wei (Faculty of Arts and Sciences Beijing Normal University Zhuhai 519087 P.R. China) J Jing Wang (Hunan Cancer Hospital Changsha China) J Jingzhe Deng (Faculty of Arts and Sciences Beijing Normal University Zhuhai 519087 P.R. China) Y Yalin Mu (Faculty of Arts and Sciences Beijing Normal University Zhuhai 519087 P.R. China) Q Qingsong Hua (Key Laboratory of Beam Technology of Ministry of Education, School of Physics and Astronomy) L Liu Lin Z Zhenhua Yan (Frontiers Science Center for New Organic Matter, Key Laboratory of Advanced Energy Materials Chemistry (Ministry of Education), State Key Laboratory of Advanced Chemical Power Sources, College of Chemistry)

Abstract

Abstract The d–π conjugated conductive metal coordination frameworks ( c ‐MCFs) are a type of emerging crystalline porous material. However, due to the interlayer conjugation effect, the clusters tend to assemble into 3D architectures, making it difficult to directly prepare ultrathin 2D structures. Herein, by reasonably regulating the hydrogen‐bond network and solvation layer of the reaction solvent environment, the interlayer conjugation effect of the Co‐DABDT (DABDT = 2,5‐diaminobenzene‐1,4‐dithiol) layer was effectively inhibited, and ultrathin c ‐MCFs were efficiently constructed. Using it as a suitable model catalyst, the solvent environment was optimized, and Co‐DABDT with different homogenic edge curvatures was synthesized, including bulk Co‐DABDT (Co‐DABDT‐B), layered Co‐DABDT (Co‐DABDT‐L), and Co‐DABDT nanosheet (Co‐DABDT‐NS). Among these, Co‐DABDT‐NS has the highest homogenic edge curvatures, with the optimal onset potential and half‐wave potential of 0.97 and 0.82 V RHE , respectively. Experimental and theoretical results show that as the layer plate thickness decreases, the homogenic edge curvatures can optimize the interface charge and electric field distribution and enhance the adsorption of oxidation intermediates, thereby achieving efficient oxygen reduction reaction (ORR) catalytic activity. The results indicate that the role of this morphology‐induced local field enhances the ORR kinetics and provides a new perspective for the study of catalyst morphology‐field effect‐catalytic kinetics.

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 (16)

Z

Zemin Sun

Faculty of Arts and Sciences Beijing Normal University Zhuhai 519087 P.R. China

Y

Youxuan Ni

L

Lanke Luo

Faculty of Arts and Sciences Beijing Normal University Zhuhai 519087 P.R. China

H

Haomin Jiang

Faculty of Arts and Sciences Beijing Normal University Zhuhai 519087 P.R. China

Y

Yiting Han

Faculty of Arts and Sciences Beijing Normal University Zhuhai 519087 P.R. China

J

Jiayue He

Q

Qiuhong Wan

Faculty of Arts and Sciences Beijing Normal University Zhuhai 519087 P.R. China

D

Dingwei Cui

Faculty of Arts and Sciences Beijing Normal University Zhuhai 519087 P.R. China

F

Fangye Zhang

Faculty of Arts and Sciences Beijing Normal University Zhuhai 519087 P.R. China

J

Jiaoyang Wei

Faculty of Arts and Sciences Beijing Normal University Zhuhai 519087 P.R. China

J

Jing Wang

Hunan Cancer Hospital Changsha China

J

Jingzhe Deng

Faculty of Arts and Sciences Beijing Normal University Zhuhai 519087 P.R. China

Y

Yalin Mu

Faculty of Arts and Sciences Beijing Normal University Zhuhai 519087 P.R. China

Q

Qingsong Hua

Key Laboratory of Beam Technology of Ministry of Education, School of Physics and Astronomy

L

Liu Lin

Z

Zhenhua Yan

Frontiers Science Center for New Organic Matter, Key Laboratory of Advanced Energy Materials Chemistry (Ministry of Education), State Key Laboratory of Advanced Chemical Power Sources, College of Chemistry