催化作用
密度泛函理论
镱
氮气
Atom(片上系统)
电极
材料科学
氧气
氧原子
无机化学
化学
物理化学
计算化学
光电子学
分子
有机化学
计算机科学
兴奋剂
嵌入式系统
作者
Tao Xu,Meiling Liu,Kang Wu,Chao Liu
标识
DOI:10.1021/acsanm.4c02434
摘要
The research and design of oxygen electrode catalysts are of great significance for achieving carbon peak and carbon neutrality goals. In this study, a comprehensive study, including detailed stability, adsorption properties, electronic characteristics, and activity center configuration of ytterbium single-atom catalysts (YbNx-gra) loaded on two-dimensional nanomaterials under acidic conditions, was conducted according to density functional theory calculations. The results indicated that with the increase of nitrogen content, the efficiency of the ytterbium single-atom oxygen electrode catalysts using nitrogen solid supports was improved. There are several good linear relationships between the adsorption free energy of intermediates, such as ΔGOH* and ΔGOOH*, ΔGOH*, and ΔGO*. This provides a basis for the drawing of volcano maps and the rapid prediction of highly active catalysts. Due to the reaction selectivity of catalysts, the O* intermediates and 2OH* intermediates accompany the catalytic reaction. For catalytic activity, the YbN4-II catalyst showed the lowest overpotential of ORR which ηORR = 0.42 V. In particular, the ηORR and ηOER of the YbN3-IV catalyst were as low as 0.58 and 0.41 V, respectively. The linear relationships and volcano plots indicate the feasibility of some YbNx-gra catalysts, making them promising candidates for oxygen electrode catalysts.
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