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◆ Advanced Functional Materials2026-03-21· Electrocatalyst

Manipulating Surface Reconstruction of a Metal–Organic Framework to Achieve Molecule‐Enhanced CO <sub>2</sub> Electroreduction

Xuan Li, Li‐ming Cao, Li‐Wen Ding, W. W. Zhang, Jianfeng Yang, Wen‐Juan Huang, Zhong‐Bao Wen, X. J. Zhang, Hai‐Hua Huang, Yanan Xu, Jia Zhang, Chun‐Ting He

原始摘要(英文原文)· Original abstract
ABSTRACT The electrochemical reconstruction behavior of metal–organic frameworks (MOFs) profoundly affects their catalytic performance, but their effective regulation remains a major challenge. Herein, we propose a facile single‐atom‐driven strategy to manipulate the surface reconstruction of a gallogen‐based MOF, engineering an efficient active structure of ellagic acid and monatomic Cu co‐modified bismuth oxycarbonate, achieving organic–inorganic dual‐modulation. The reconstructed organic–inorganic hybrid electrocatalyst demonstrates notable performance for CO 2 electroreduction to formate with a maximal Faraday efficiency of 99.4% ± 1.5%. Moreover, throughout the continuous electrocatalysis period of 600 h at 250 mA·cm −2 , the formate Faraday efficiency always maintains above 95.2% ± 2.4%. The corresponding charge transfer amount for formate generation reaches 507600 C·cm −2 , representing one of the best among CO 2 ‐to‐formate electrocatalysts and setting a record among bismuth‐based electrocatalysts. A series of operando and non‐operando characterization techniques combined with theoretical calculations reveal that the dual‐modulation of monatomic Cu and ellagic acid optimizes the p ‐band center of Bi sites, thereby enhancing the adsorption of key * OCHO intermediate. This work establishes a molecular enhancement paradigm for engineering high‐performance electrocatalysts by harnessing surface reconstruction of MOFs.
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Manipulating Surface Reconstruction of a Metal–Organic Framework to Achieve Molecule‐Enhanced CO <sub>2</sub> Electroreduction — 科研速览 Science Skim