作者
Christoph Baeumer, Jiang Li, Qiyang Lu, Allen Yu-Lun Liang, Lei Jin, Henrique Perin Martins, Tomáš Duchoň, Maria Glöß, Sabrina M Gericke, Marcus A Wohlgemuth, Margret Giesen, Emily E Penn, Regina Dittmann, Felix Gunkel, Rainer Waser, Michal Bajdich, Slavomír Nemšák, J Tyler Mefford, William C Chueh
发表日期
2021/5
期刊
Nature materials
卷号
20
期号
5
页码范围
674-682
出版商
Nature Publishing Group UK
简介
Structure–activity relationships built on descriptors of bulk and bulk-terminated surfaces are the basis for the rational design of electrocatalysts. However, electrochemically driven surface transformations complicate the identification of such descriptors. Here we demonstrate how the as-prepared surface composition of (001)-terminated LaNiO3 epitaxial thin films dictates the surface transformation and the electrocatalytic activity for the oxygen evolution reaction. Specifically, the Ni termination (in the as-prepared state) is considerably more active than the La termination, with overpotential differences of up to 150 mV. A combined electrochemical, spectroscopic and density-functional theory investigation suggests that this activity trend originates from a thermodynamically stable, disordered NiO2 surface layer that forms during the operation of Ni-terminated surfaces, which is kinetically inaccessible when starting with a …
引用总数