Water splitting to produce molecular hydrogen is an essential method to store sustainable energies. One of the bottlenecks for water splitting is the availability of an efficient and stable water-oxidizing catalyst. Herein, metallic cobalt foil, after the treatment under high potential (10–60.0 V), was used for water oxidation. The cobalt/cobalt oxide surface was characterized by various spectroscopic, microscopy, X-ray diffraction, and electrochemical methods. Diffuse reflectance infrared Fourier transform spectroscopy showed peaks for Co oxide at 489 and 595 cm–1 attributed to the stretching of Co–O and bending of O–Co–O bonds in the CoO6 octahedra. Small aggregated particles (ca. 50–100 nm) with a spherical morphology were detected by sc...
Efficient catalysis of water oxidation represents one of the major challenges en route to efficient ...
Photoelectrochemical water splitting represents a promising route for producing sustainable and pote...
Cobalt oxides have been identified as highly active catalysts for the electrochemical water splittin...
Water splitting to produce molecular hydrogen is an essential method to store sustainable energies. ...
Water splitting to produce molecular hydrogen is an essential method to store sustainable energies. ...
Water splitting to produce molecular hydrogen is an essential method to store sustainable energies. ...
The presence of layered cobalt oxides has been identified experimentally in Co-based anodes under ox...
The presence of layered cobalt oxides has been identified experimentally in Co-based anodes under ox...
The presence of layered cobalt oxides has been identified experimentally in Co-based anodes under ox...
The presence of layered cobalt oxides has been identified experimentally in Co-based anodes under ox...
Water splitting is the key step towards artificial photosystems for solar energy conversion and stor...
Water splitting is the key step towards artificial photosystems for solar energy conversion and stor...
An electrocatalytic cobalt oxide film for water oxidation was prepared on an indium tin oxide (ITO)-...
Development of electrocatalysts for the conversion of water to dioxygen is important in a variety of...
Efficient catalysis of water oxidation represents one of the major challenges en route to efficient ...
Efficient catalysis of water oxidation represents one of the major challenges en route to efficient ...
Photoelectrochemical water splitting represents a promising route for producing sustainable and pote...
Cobalt oxides have been identified as highly active catalysts for the electrochemical water splittin...
Water splitting to produce molecular hydrogen is an essential method to store sustainable energies. ...
Water splitting to produce molecular hydrogen is an essential method to store sustainable energies. ...
Water splitting to produce molecular hydrogen is an essential method to store sustainable energies. ...
The presence of layered cobalt oxides has been identified experimentally in Co-based anodes under ox...
The presence of layered cobalt oxides has been identified experimentally in Co-based anodes under ox...
The presence of layered cobalt oxides has been identified experimentally in Co-based anodes under ox...
The presence of layered cobalt oxides has been identified experimentally in Co-based anodes under ox...
Water splitting is the key step towards artificial photosystems for solar energy conversion and stor...
Water splitting is the key step towards artificial photosystems for solar energy conversion and stor...
An electrocatalytic cobalt oxide film for water oxidation was prepared on an indium tin oxide (ITO)-...
Development of electrocatalysts for the conversion of water to dioxygen is important in a variety of...
Efficient catalysis of water oxidation represents one of the major challenges en route to efficient ...
Efficient catalysis of water oxidation represents one of the major challenges en route to efficient ...
Photoelectrochemical water splitting represents a promising route for producing sustainable and pote...
Cobalt oxides have been identified as highly active catalysts for the electrochemical water splittin...