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Preparation of Practical High-Performance Electrodes for Acidic and Alkaline Media Water Electrolysis.


ABSTRACT: The synthesis of electrocatalyst and the electrode preparation were merged into a one-step process and proved to be a versatile method to synthesize metal oxide electrocatalysts on the conductive carbon paper (CP). Very simply, the metal precursor deposited on the CP was thermally treated by a torch-gun for just 6 s, resulting in the formation of RuO2 , Co3 O4 , and mixed oxide nanoparticles. The material could be directly used as working electrode for oxygen evolution reaction (OER). Compared with commercial and other state-of-the-art electrocatalysts, the fabricated electrode showed a superior electrocatalytic activity for OER in 1 m HClO4 and 1 m KOH in terms of not only a low overpotential to reach 10 mA cm-2 but also a high current density at 1.6 VRHE with satisfying a long-term stability. The novel strategy without requiring time-consuming and uneconomical steps could be expanded to the preparation of various metal oxides on conductive substrates towards diverse electrocatalytic applications.

SUBMITTER: Moon GH 

PROVIDER: S-EPMC9299631 | biostudies-literature | 2022 Feb

REPOSITORIES: biostudies-literature

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Preparation of Practical High-Performance Electrodes for Acidic and Alkaline Media Water Electrolysis.

Moon Gun-Hee GH   Wang Yue Y   Kim Seongseop S   Budiyanto Eko E   Tüysüz Harun H  

ChemSusChem 20211218 3


The synthesis of electrocatalyst and the electrode preparation were merged into a one-step process and proved to be a versatile method to synthesize metal oxide electrocatalysts on the conductive carbon paper (CP). Very simply, the metal precursor deposited on the CP was thermally treated by a torch-gun for just 6 s, resulting in the formation of RuO<sub>2</sub> , Co<sub>3</sub> O<sub>4</sub> , and mixed oxide nanoparticles. The material could be directly used as working electrode for oxygen evo  ...[more]

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