过电位
析氧
电解水
催化作用
氧气
电解
材料科学
阳极
无机化学
化学工程
密度泛函理论
分解水
电极
浸出(土壤学)
质子交换膜燃料电池
质子
化学
膜
电化学
电催化剂
碱性水电解
离子交换
格子(音乐)
歧化
氧化还原
克拉克电极
作者
Lingxiao Li,Fangqing Wang,He Qi,Daixing Wei,Mingwei Zhang,Tianpeng Zhang,Liyao Tang,Zhijie Cao,Sanwei Hao,Xuerong Zheng,Hui Liu,Hailin Cong
出处
期刊:Small
[Wiley]
日期:2026-08-10
卷期号:: e75120-e75120
摘要
ABSTRACT RuO 2 is the most promising anodic oxygen evolution reaction catalyst for use in proton exchange membrane water electrolysers (PEMWE) due to following the lattice oxygen oxidation mechanism (LOM) pathway. However, the excessive participation of lattice oxygen leads to structural collapse and the leaching of Ru at high oxidation potentials, causing a sharp decrease in stability. To enhance its stability while maintaining a highly active LOM pathway, we develop highly entropic RuO 2 ((VCrMnNiRu)O 2 ) with an entropic stabilization effect. (VCrMnNiRu)O 2 not only displays a low overpotential of 216 mV at 10 mA cm −2 and high mass activity of 199.706 A g Ru −1 at 250 mV overpotential in 0.5 m H 2 SO 4 , but also the Pt/C||(VCrMnNiRu)O 2 electrode pairs deliver good stability with 1500 h of continuous operation at 500 mA cm −2 in PEMWE. A combination of advanced in situ spectroscopic techniques and density functional theory calculations confirms that the high‐entropy effect can inhibit the overoxidation of Ru and Ru leaching.
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