Photoelectrochemical (PEC) water splitting using solar energy has attracted great attention for generation of renewable hydrogen with less carbon footprint, while there are enormous challenges that still remain for improving solar energy water splitting efficiency, due to limited light harvesting, energy loss associated to fast recombination of photogenerated charge carriers, as well as electrode degradation. This overview focuses on the recent development about catalyst nanomaterials and nanostructures in different PEC water splitting systems. As photoanode, Au nanoparticle-decorated TiO2 nanowire electrodes exhibited enhanced photoactivity in both the UV and the visible regions due to surface plasmon resonance of Au and showed the largest...
The development of low cost, scalable, renewable energy technologies is one of today's most pressing...
Photoelectrochemical water splitting is a promising route for sustainable hydrogen production. Herei...
Photoelectrochemical water splitting is a promising route for sustainable hydrogen production. Herei...
Environmental degradation due to the carbon emissions from burning fossil fuels has triggered the ne...
Photocatalytic water splitting under irradiation of light is an ultimate system to make available re...
Photocatalytic water splitting under irradiation of light is an ultimate system to make available re...
Photoelectrochemical water splitting (PEC) offers a promising path for sustainable generation of hyd...
Photoelectrochemical (PEC) water splitting is a promising technology for the production of clean hyd...
Photoelectrochemical (PEC) water splitting is a promising route for solar energy conversion to hydro...
金沢大学先端科学・社会共創推進機構Visible-light-driven photoelectrochemical (PEC) and photocatalytic water splitting ...
It is believed that the solar energy is the ultimate clean energy source to meet global human energy...
In the context of a future renewable energy system based on hydrogen storage as energy-dense liquid ...
In the context of a future renewable energy system based on hydrogen storage as energy-dense liquid ...
This dissertation presents surface enhanced photoanodes and oxygen evolution reaction (OER) catalyst...
Photoelectrochemical water splitting is a promising route for sustainable hydrogen production. Herei...
The development of low cost, scalable, renewable energy technologies is one of today's most pressing...
Photoelectrochemical water splitting is a promising route for sustainable hydrogen production. Herei...
Photoelectrochemical water splitting is a promising route for sustainable hydrogen production. Herei...
Environmental degradation due to the carbon emissions from burning fossil fuels has triggered the ne...
Photocatalytic water splitting under irradiation of light is an ultimate system to make available re...
Photocatalytic water splitting under irradiation of light is an ultimate system to make available re...
Photoelectrochemical water splitting (PEC) offers a promising path for sustainable generation of hyd...
Photoelectrochemical (PEC) water splitting is a promising technology for the production of clean hyd...
Photoelectrochemical (PEC) water splitting is a promising route for solar energy conversion to hydro...
金沢大学先端科学・社会共創推進機構Visible-light-driven photoelectrochemical (PEC) and photocatalytic water splitting ...
It is believed that the solar energy is the ultimate clean energy source to meet global human energy...
In the context of a future renewable energy system based on hydrogen storage as energy-dense liquid ...
In the context of a future renewable energy system based on hydrogen storage as energy-dense liquid ...
This dissertation presents surface enhanced photoanodes and oxygen evolution reaction (OER) catalyst...
Photoelectrochemical water splitting is a promising route for sustainable hydrogen production. Herei...
The development of low cost, scalable, renewable energy technologies is one of today's most pressing...
Photoelectrochemical water splitting is a promising route for sustainable hydrogen production. Herei...
Photoelectrochemical water splitting is a promising route for sustainable hydrogen production. Herei...