Recently there has been a noticeable shift towards developing amorphous bimetallic or trimetallic oxides for electrochemical water splitting. However, the fabrication of a homogeneous mixed metal oxide electrocatalyst suitable for water electrolysis is not a facile process. Here we introduce an electrochemical synthesis method that is rapid, simple and performed under ambient conditions. Using this approach it is possible to create a catalytically active FeCoNiOxHy amorphous material whose activity is dependent on the nature of the underlying support. The trimetallic oxide is significantly more active than any single or bimetallic oxide combination for the OER. This amorphous catalyst demonstrates not only excellent activity but also stabil...
This research developed a new approach to synthesise novel catalysts for electrochemical water split...
A sustainable solution for meeting the energy demands at our planet is by utilizing wind-, solar-, w...
The oxygen evolution reaction (OER) is the key to prepare electrocatalysts for water splitting. Hete...
Recently there has been a noticeable shift towards developing amorphous bimetallic or trimetallic ox...
International audienceLarge-scale electrolysis of water for hydrogen generation requires better cata...
Electrocatalytic water splitting into H-2 and O-2 is a key technology for carbon-neutral energy. Her...
Electrochemical water splitting has been regarded a promising technology to provide a mobile and sus...
The development of cost-effective and high-performance electrocatalysts for water oxidation has attr...
Photochemical metal–organic deposition (PMOD) was used to prepare amorphous metal oxide films contai...
The generation of hydrogen through the electrolysis of water has attracted attention as a promising ...
Catalytic water splitting to hydrogen and oxygen is considered as one of the convenient routes for t...
For industrial-scale water electrolysis, development of a highly stable and active oxygen evolution ...
Abstract The development of efficient bifunctional electrodes with extraordinary mass activity and r...
Earth-abundant transition metal-based catalysts have been extensively investigated for their applica...
The development of efficient bifunctional electrodes with extraordinary mass activity and robust sta...
This research developed a new approach to synthesise novel catalysts for electrochemical water split...
A sustainable solution for meeting the energy demands at our planet is by utilizing wind-, solar-, w...
The oxygen evolution reaction (OER) is the key to prepare electrocatalysts for water splitting. Hete...
Recently there has been a noticeable shift towards developing amorphous bimetallic or trimetallic ox...
International audienceLarge-scale electrolysis of water for hydrogen generation requires better cata...
Electrocatalytic water splitting into H-2 and O-2 is a key technology for carbon-neutral energy. Her...
Electrochemical water splitting has been regarded a promising technology to provide a mobile and sus...
The development of cost-effective and high-performance electrocatalysts for water oxidation has attr...
Photochemical metal–organic deposition (PMOD) was used to prepare amorphous metal oxide films contai...
The generation of hydrogen through the electrolysis of water has attracted attention as a promising ...
Catalytic water splitting to hydrogen and oxygen is considered as one of the convenient routes for t...
For industrial-scale water electrolysis, development of a highly stable and active oxygen evolution ...
Abstract The development of efficient bifunctional electrodes with extraordinary mass activity and r...
Earth-abundant transition metal-based catalysts have been extensively investigated for their applica...
The development of efficient bifunctional electrodes with extraordinary mass activity and robust sta...
This research developed a new approach to synthesise novel catalysts for electrochemical water split...
A sustainable solution for meeting the energy demands at our planet is by utilizing wind-, solar-, w...
The oxygen evolution reaction (OER) is the key to prepare electrocatalysts for water splitting. Hete...