Operando tracking of oxidation-state changes by coupling electrochemistry with time-resolved X-ray absorption spectroscopy demonstrated for water oxidation by a cobalt-based catalyst film

Author:

Pasquini ChiaraORCID,Liu Si,Chernev Petko,Gonzalez-Flores DiegoORCID,Mohammadi Mohammad RezaORCID,Kubella Paul,Jiang Shan,Loos StefanORCID,Klingan KatharinaORCID,Sikolenko Vadim,Mebs Stefan,Haumann Michael,Beyer Paul,D’Amario LucaORCID,Smith Rodney D. L.ORCID,Zaharieva IvelinaORCID,Dau HolgerORCID

Abstract

AbstractTransition metal oxides are promising electrocatalysts for water oxidation, i.e., the oxygen evolution reaction (OER), which is critical in electrochemical production of non-fossil fuels. The involvement of oxidation state changes of the metal in OER electrocatalysis is increasingly recognized in the literature. Tracing these oxidation states under operation conditions could provide relevant information for performance optimization and development of durable catalysts, but further methodical developments are needed. Here, we propose a strategy to use single-energy X-ray absorption spectroscopy for monitoring metal oxidation-state changes during OER operation with millisecond time resolution. The procedure to obtain time-resolved oxidation state values, using two calibration curves, is explained in detail. We demonstrate the significance of this approach as well as possible sources of data misinterpretation. We conclude that the combination of X-ray absorption spectroscopy with electrochemical techniques allows us to investigate the kinetics of redox transitions and to distinguish the catalytic current from the redox current. Tracking of the oxidation state changes of Co ions in electrodeposited oxide films during cyclic voltammetry in neutral pH electrolyte serves as a proof of principle. Graphical abstract

Funder

Chinese Scholarship Council

Alexander-von-Humboldt (AvH) foundation

German Federal Ministry of Education and Research

Deutsche Forschungsgemeinschaft

Publisher

Springer Science and Business Media LLC

Subject

Biochemistry,Analytical Chemistry

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