A Janus cobalt-based catalytic material for electro-splitting of water

被引:0
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作者
Saioa Cobo
Jonathan Heidkamp
Pierre-André Jacques
Jennifer Fize
Vincent Fourmond
Laure Guetaz
Bruno Jousselme
Valentina Ivanova
Holger Dau
Serge Palacin
Marc Fontecave
Vincent Artero
机构
[1] Laboratoire de Chimie et Biologie des Métaux (CEA/Université Grenoble 1/CNRS),
[2] FB Physik,undefined
[3] Free University Berlin,undefined
[4] Institut LITEN,undefined
[5] CEA LITEN/DEHT/LCPEM,undefined
[6] CEA,undefined
[7] IRAMIS,undefined
[8] SPCSI,undefined
[9] Chemistry of Surfaces and Interfaces group,undefined
[10] CEA-Leti,undefined
[11] MINATEC Campus,undefined
[12] Collège de France,undefined
[13] 11 place Marcelin-Berthelot,undefined
关键词
D O I
10.1038/nmat3385
中图分类号
学科分类号
摘要
The future of energy supply depends on innovative breakthroughs regarding the design of cheap, sustainable and efficient systems for the conversion and storage of renewable energy sources. The production of hydrogen through water splitting seems a promising and appealing solution. We found that a robust nanoparticulate electrocatalytic material, H2–CoCat, can be electrochemically prepared from cobalt salts in a phosphate buffer. This material consists of metallic cobalt coated with a cobalt-oxo/hydroxo-phosphate layer in contact with the electrolyte and mediates H2 evolution from neutral aqueous buffer at modest overpotentials. Remarkably, it can be converted on anodic equilibration into the previously described amorphous cobalt oxide film (O2–CoCat or CoPi) catalysing O2 evolution. The switch between the two catalytic forms is fully reversible and corresponds to a local interconversion between two morphologies and compositions at the surface of the electrode. After deposition, the noble-metal-free coating thus functions as a robust, bifunctional and switchable catalyst.
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页码:802 / 807
页数:5
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