尖晶石
析氧
催化作用
氧气
吸附
材料科学
过渡金属
密度泛函理论
组态熵
金属
化学工程
化学物理
化学
热力学
物理化学
计算化学
冶金
电化学
工程类
物理
有机化学
生物化学
电极
作者
Jihyun Baek,Md Delowar Hossain,Pinaki Mukherjee,Junghwa Lee,Kirsten T. Winther,Juyoung Leem,Yue Jiang,William C. Chueh,Michal Bajdich,Xiaolin Zheng
标识
DOI:10.1038/s41467-023-41359-7
摘要
Developing stable and efficient electrocatalysts is vital for boosting oxygen evolution reaction (OER) rates in sustainable hydrogen production. High-entropy oxides (HEOs) consist of five or more metal cations, providing opportunities to tune their catalytic properties toward high OER efficiency. This work combines theoretical and experimental studies to scrutinize the OER activity and stability for spinel-type HEOs. Density functional theory confirms that randomly mixed metal sites show thermodynamic stability, with intermediate adsorption energies displaying wider distributions due to mixing-induced equatorial strain in active metal-oxygen bonds. The rapid sol-flame method is employed to synthesize HEO, comprising five 3d-transition metal cations, which exhibits superior OER activity and durability under alkaline conditions, outperforming lower-entropy oxides, even with partial surface oxidations. The study highlights that the enhanced activity of HEO is primarily attributed to the mixing of multiple elements, leading to strain effects near the active site, as well as surface composition and coverage.
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