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◆ Applied Organometallic Chemistry2026-03-17· Overpotential

Two‐Dimensional Coordination Polymers as Efficient Photoanodes Toward Solar‐Driven Water Oxidation

T.C. Wu, Bo‐Bo Han, Yu‐Jie Xie, Wen‐Duo Zhu, Rui‐Zi Xue, Sheng‐Rui Zhang, Jiu‐Fu Lu, Bo Liu

原始摘要(英文原文)· Original abstract
ABSTRACT Amid growing global energy demands and environmental concerns, hydrogen energy has emerged as a promising clean alternative. This study focuses on the development of efficient photoelectrocatalytic materials for the oxygen evolution reaction (OER). Three novel two‐dimensional coordination polymers— SNUT‐9‐Cd , SNUT‐9‐Cd+Co , and SNUT‐9‐Co —were solvothermally synthesized using a tricarboxylic pyridazine‐based ligand, H 3 (5‐CMOIA). Thermogravimetric analysis (TGA) confirmed their high thermal stability, with SNUT‐9‐Co maintaining structural integrity up to 300°C. Mott–Schottky analysis confirmed the n‐type semiconductor behavior of all three compounds. SNUT‐9‐Co stood out with its superior OER performance under simulated solar irradiation, displaying a low overpotential of 261 mV at 0.3 mA·cm −2 , rapid charge transfer, and excellent stability, thereby highlighting its promise as a photoanode for solar‐driven water splitting.
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