化学
催化作用
反键分子轨道
反应性(心理学)
过渡金属
析氧
吸附
过渡状态
化学物理
金属
密度泛函理论
结合能
计算化学
氧气
光化学
物理化学
有机化学
电化学
原子物理学
电子
电极
病理
物理
医学
原子轨道
替代医学
量子力学
作者
Hua Bing Tao,Liwen Fang,Jiazang Chen,Hong Bin Yang,Jiajian Gao,Jianwei Miao,Shengli Chen,Bin Liu
摘要
A number of important reactions such as the oxygen evolution reaction (OER) are catalyzed by transition metal oxides (TMOs), the surface reactivity of which is rather elusive. Therefore, rationally tailoring adsorption energy of intermediates on TMOs to achieve desirable catalytic performance still remains a great challenge. Here we show the identification of a general and tunable surface structure, coordinatively unsaturated metal cation (MCUS), as a good surface reactivity descriptor for TMOs in OER. Surface reactivity of a given TMO increases monotonically with the density of MCUS, and thus the increase in MCUS improves the catalytic activity for weak-binding TMOs but impairs that for strong-binding ones. The electronic origin of the surface reactivity can be well explained by a new model proposed in this work, wherein the energy of the highest-occupied d-states relative to the Fermi level determines the intermediates' bonding strength by affecting the filling of the antibonding states. Our model for the first time well describes the reactivity trends among TMOs, and would initiate viable design principles for, but not limited to, OER catalysts.
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