材料科学
析氧
电解
兴奋剂
离子
电解水
氧气
安培
膜
化学工程
分析化学(期刊)
光电子学
电极
物理化学
电化学
热力学
电流(流体)
环境化学
物理
电解质
化学
量子力学
遗传学
生物
工程类
作者
Fan Zhang,Ke Wang,Huigang Zhang,Shiliu Yang,Mai Xu,Yi He,Lecheng Lei,Pengfei Xie,Xingwang Zhang
标识
DOI:10.1002/adfm.202500861
摘要
Abstract The sluggish kinetics of the oxygen evolution reaction (OER) critically limit the efficiency of anion exchange membrane water electrolysis (AEMWE). Herein, a Ce‐doped bimetallic Fe 2 P/NiCoP hybrid pre‐catalyst that undergoes dynamic reconstruction to activate a highly efficient OER pathway is designed. The optimized Ce 0.1 ‐Fe 2 P/NiCoP exhibits an impressively low overpotential of 280 mV at 0.5 A cm −2 and a small Tafel slope of 55.3 mV dec −1 in a 1.0 M KOH. Remarkably, when integrated as the anode in an AEMWE electrolyzer, it delivers a low cell voltage of 1.812 V at 1.0 A cm −2 and maintains stable performance for over 500 h at 60 °C. In situ characterizations and density functional theory (DFT) calculations reveal that Ce‐doping enhances surface reconstruction and modulates the electronic structure, thereby reducing energy barriers for intermediates (Δ G *OH and Δ G *OOH ) formation and accelerating OER kinetics. This work introduces a novel strategy to utilize catalyst reconstruction, advancing their applications in AEMWE systems.
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