析氧
氧气
化学物理
化学
拉尼奥
材料科学
无机化学
物理化学
电化学
电极
光电子学
铁电性
电介质
有机化学
作者
Jishan Liu,Endong Jia,Kelsey A. Stoerzinger,Le Wang,Yining Wang,Zhenzhong Yang,Dawei Shen,Mark Engelhard,Mark Bowden,Zihua Zhu,Scott A. Chambers,Yingge Du
标识
DOI:10.1021/acs.jpcc.0c04808
摘要
Determining the role of lattice oxygen in the oxygen evolution reaction (OER) is pivotal to understanding reaction mechanisms and predictive design of electrocatalysts based on transition metal oxides. Here, using well-defined, isotope (18O)-enriched, epitaxial LaNiO3 thin films as a model system, we show that dynamic lattice oxygen exchange occurs during OER. Time-of-flight secondary ion mass spectrometry studies reveal that lattice oxygen exchange can affect the top 2 nm of the LaNiO3 films, but the surface largely remains crystalline and in the perovskite phase after OER. In addition, cyclic voltammetry and potentiostatic measurements show that OER kinetics are strongly pH-dependent, which is different from what is expected from the typical four concerted proton–electron transfer steps, most likely due to the involvement of lattice oxygen. Our findings suggest that the roles of lattice oxygen during OER and the mechanism of charge transfer in such systems need to be further studied in order to design more efficient and stable electrocatalysts.
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