钌
铱
过电位
催化作用
氧化钌
氧化物
化学
氧气
光化学
氧化磷酸化
析氧
氧化态
无机化学
材料科学
电化学
电极
物理化学
有机化学
生物化学
作者
Wenxiang Zhu,Xiangcong Song,Fan Liao,Hui Huang,Qi Shao,Kun Feng,Yunjie Zhou,Mengjie Ma,Jie Wu,Hao Yang,Haiwei Yang,Meng Wang,Jie Shi,Jun Zhong,Tao Cheng,Mingwang Shao,Yang Liu,Zhenhui Kang
标识
DOI:10.1038/s41467-023-41036-9
摘要
The oxygen evolution reactions in acid play an important role in multiple energy storage devices. The practical promising Ru-Ir based catalysts need both the stable high oxidation state of the Ru centers and the high stability of these Ru species. Here, we report stable and oxidative charged Ru in two-dimensional ruthenium-iridium oxide enhances the activity. The Ru0.5Ir0.5O2 catalyst shows high activity in acid with a low overpotential of 151 mV at 10 mA cm-2, a high turnover frequency of 6.84 s-1 at 1.44 V versus reversible hydrogen electrode and good stability (618.3 h operation). Ru0.5Ir0.5O2 catalysts can form more Ru active sites with high oxidation states at lower applied voltages after Ir incorporation, which is confirmed by the pulse voltage induced current method. Also, The X-ray absorption spectroscopy data shows that the Ru-O-Ir local structure in two-dimensional Ru0.5Ir0.5O2 solid solution improved the stability of these Ru centers.
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