International audienceLarge-scale electrolysis of water for hydrogen generation requires better catalysts to lower the kinetic barriers associated with the oxygen evolution reaction (OER). Although most OER catalysts are based on crystalline mixed-metal oxides, high activities can also be achieved with amorphous phases. Methods for producing amorphous materials, however, are not typically amenable to mixed-metal compositions. We demonstrate that a low-temperature process, photochemical metal-organic deposition, can produce amorphous (mixed) metal oxide films for OER catalysis. The films contain a homogeneous distribution of metals with compositions that can be accurately controlled. The catalytic properties of amorphous iron oxide prepared ...
Optically transparent cocatalyst film materials is very desirable for improved photoelectrochemical ...
textSolar water splitting -- using electromagnetic energy to convert water to hydrogen and oxygen ga...
We report here a facile, one-step precipitating metal nitrate deposition (PMND) method to prepare am...
International audienceLarge-scale electrolysis of water for hydrogen generation requires better cata...
The splitting of water into hydrogen and oxygen is widely viewed as the most sustainable option for ...
A fabrication route is presented by a novel metal organic electrochemical approach, allowing facile...
Photochemical metal–organic deposition (PMOD) was used to prepare amorphous metal oxide films contai...
Catalytic water splitting to hydrogen and oxygen is considered as one of the convenient routes for t...
Recently there has been a noticeable shift towards developing amorphous bimetallic or trimetallic ox...
Sunlight-driven water splitting to produce hydrogen fuel is an attractive method for renewable energ...
The conversion of electrical energy derived from clean, renewable, and intermittent sources such as ...
© 2017 The Royal Society of Chemistry. We present a variety of amorphous transition-metal borides pr...
Sunlight-driven water splitting to produce hydrogen fuel is an attractive method for renewable energ...
Large-scale industrial application of solar-driven water splitting has called for the development of...
Physical vapor deposition (PVD) techniques are proposed as high performing and easily tunable method...
Optically transparent cocatalyst film materials is very desirable for improved photoelectrochemical ...
textSolar water splitting -- using electromagnetic energy to convert water to hydrogen and oxygen ga...
We report here a facile, one-step precipitating metal nitrate deposition (PMND) method to prepare am...
International audienceLarge-scale electrolysis of water for hydrogen generation requires better cata...
The splitting of water into hydrogen and oxygen is widely viewed as the most sustainable option for ...
A fabrication route is presented by a novel metal organic electrochemical approach, allowing facile...
Photochemical metal–organic deposition (PMOD) was used to prepare amorphous metal oxide films contai...
Catalytic water splitting to hydrogen and oxygen is considered as one of the convenient routes for t...
Recently there has been a noticeable shift towards developing amorphous bimetallic or trimetallic ox...
Sunlight-driven water splitting to produce hydrogen fuel is an attractive method for renewable energ...
The conversion of electrical energy derived from clean, renewable, and intermittent sources such as ...
© 2017 The Royal Society of Chemistry. We present a variety of amorphous transition-metal borides pr...
Sunlight-driven water splitting to produce hydrogen fuel is an attractive method for renewable energ...
Large-scale industrial application of solar-driven water splitting has called for the development of...
Physical vapor deposition (PVD) techniques are proposed as high performing and easily tunable method...
Optically transparent cocatalyst film materials is very desirable for improved photoelectrochemical ...
textSolar water splitting -- using electromagnetic energy to convert water to hydrogen and oxygen ga...
We report here a facile, one-step precipitating metal nitrate deposition (PMND) method to prepare am...