电解
电解水
双功能
电解质
聚合物电解质膜电解
碱性水电解
膜
化学工程
电极
材料科学
离子交换
电流密度
灵活性(工程)
化学
电流(流体)
分解水
无机化学
催化作用
离子
电气工程
工程类
有机化学
物理化学
物理
统计
光催化
量子力学
生物化学
数学
作者
Hong‐Jin Son,Jeemin Hwang,Min Young Choi,Seunghee Park,Jae Hyuk Jang,Byungchan Han,Sung Hoon Ahn
摘要
Abstract This study explores a symmetric configuration approach in anion exchange membrane (AEM) water electrolysis, focusing on overcoming adaptability challenges in dynamic conditions. Here, a rapid and mild synthesis technique for fabricating fibrous membrane‐type catalyst electrodes is developed. Our method leverages the contrasting oxidation states between the sulfur‐doped NiFe(OH) 2 shell and the metallic Ni core, as revealed by electron energy loss spectroscopy. Theoretical evaluations confirm that the S–NiFe(OH) 2 active sites optimize free energy for alkaline water electrolysis intermediates. This technique bypasses traditional energy‐intensive processes, achieving superior bifunctional activity beyond current benchmarks. The symmetric AEM water electrolyzer demonstrates a current density of 2 A cm −2 at 1.78 V at 60°C in 1 M KOH electrolyte and also sustains ampere‐scale water electrolysis below 2.0 V for 140 h even in ambient conditions. These results highlight the system's operational flexibility and structural stability, marking a significant advancement in AEM water electrolysis technology.
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