化学
钴
电解
催化作用
无机化学
离子交换
氮气
膜
氧气
离子
析氧
晋升(国际象棋)
化学工程
电极
有机化学
电化学
生物化学
物理化学
政治
政治学
法学
电解质
工程类
作者
Pengcheng Yu,Xiaolong Zhang,Tian-Yun Zhang,Xuyingnan Tao,Yang Yu,Ye-Hua Wang,Sichao Zhang,Fei‐Yue Gao,Zhuang‐Zhuang Niu,Minghui Fan,Min‐Rui Gao
摘要
Scarce and expensive iridium oxide is still the cornerstone catalyst of polymer-electrolyte membrane electrolyzers for green hydrogen production because of its exceptional stability under industrially relevant oxygen evolution reaction (OER) conditions. Earth-abundant transition metal oxides used for this task, however, show poor long-term stability. We demonstrate here the use of nitrogen-doped cobalt oxide as an effective iridium substitute. The catalyst exhibits a low overpotential of 240 mV at 10 mA cm–2 and negligible activity decay after 1000 h of operation in an alkaline electrolyte. Incorporation of nitrogen dopants not only triggers the OER mechanism switched from the traditional adsorbate evolution route to the lattice oxygen oxidation route but also achieves oxygen nonbonding (ONB) states as electron donors, thereby preventing structural destabilization. In a practical anion-exchange membrane water electrolyzer, this catalyst at anode delivers a current density of 1000 mA cm–2 at 1.78 V and an electrical efficiency of 47.8 kW-hours per kilogram hydrogen.
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