氧气
机制(生物学)
析氧
理论(学习稳定性)
化学物理
化学
统计物理学
热力学
计算机科学
物理化学
物理
认识论
哲学
机器学习
有机化学
电化学
电极
作者
Zhizhao Zhang,Jice Li,Hui Liu,Jiaxing Wang,Limin Liang,Ying Li
标识
DOI:10.1002/adts.202500218
摘要
Abstract It has been experimentally reported that Ru‐based high‐entropy oxides (Ru‐HEO) exhibit higher stability and durability in acidic oxygen evolution reaction (OER) compared to RuO 2 . However, the underlying stability mechanism remains unclear. Herein, the surface states of Ru‐HEO and RuO 2 are first studied as a function of applied potential and pH to elucidate the poisoning or oxidation of Ru active sites under OER electrocatalytic conditions. Subsequently, the formation energies of oxygen vacancies on various Ru‐HEO surface states are calculated, which are typically associated with structural instability due to the lattice oxygen oxidation mechanism. The results indicate that the presence of metal atoms in Ru‐HEO strengthens the Ru─O bond, possibly contributing to the long‐term stability of Ru‐HEO OER catalysts. This work provides insights into the origin of Ru‐HEO stability by comparison with RuO 2 .
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