An iron-base oxygen-evolution electrode for high-temperature electrolyzers

Author:

Du Kaifa,Gao EnlaiORCID,Zhang Chunbo,Ma Yongsong,Wang Peilin,Yu Rui,Li Wenmiao,Zheng Kaiyuan,Cheng Xinhua,Tang Diyong,Deng Bowen,Yin HuayiORCID,Wang DihuaORCID

Abstract

AbstractHigh-temperature molten-salt electrolyzers play a central role in metals, materials and chemicals production for their merit of favorable kinetics. However, a low-cost, long-lasting, and efficient high-temperature oxygen evolution reaction (HT-OER) electrode remains a big challenge. Here we report an iron-base electrode with an in situ formed lithium ferrite scale that provides enhanced stability and catalytic activity in both high-temperature molten carbonate and chloride salts. The finding is stemmed from a discovery of the ionic potential-stability relationship and a basicity modulation principle of oxide films in molten salt. Using the iron-base electrode, we build a kiloampere-scale molten carbonate electrolyzer to efficiently convert CO2 to carbon and oxygen. More broadly, the design principles lay the foundations for exploring cheap, Earth-abundant, and long-lasting HT-OER electrodes for electrochemical devices with molten carbonate and chloride electrolytes.

Funder

National Natural Science Foundation of China

International Science and Technology Cooperation Program of Chin

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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