The search for an alternative to replace conventional fuel has been going on for years due to the limited storage of fossil fuel and excess CO2 emission from the fuel. Using H2 as fuel has gained wide attention recently, as well as consequently splitting of water into hydrogen and oxygen. Seminal semiconductors such as TiO2 and ZnO have their position of CB and VB in alignment with water reduction and oxidation potential, respectively, but their wide bandgap allows them to absorb only UV light of the solar spectrum. Combining narrow bandgap semiconductors or other visible light active sensitizers with TiO2/ZnO is a facile route to exploit the visible light region of the solar spectrum. In this review, I make an attempt to summarize the vari...
The generation of renewable energy through photocatalysis is an attractive option to utilize the abu...
The photocatalytic splitting of water into hydrogen and oxygen using solar energy is a challenging r...
Abstract: Hydrogen produced from water using photocatalysts driven by sunlight is a sustainable way ...
Solar energy as a green and renewable energy source shows great application potential in the near fu...
This chapter is focused on photoelectrochemical water splitting using titanium dioxide, TiO2, as the...
Nano-sized TiO2 photocatalytic water-splitting technology has great potential for low-cost, environm...
Researchers are intensively investigating photochemicalwater splitting as a means of converting sola...
Robust calculations show that the incidence of solar energy on the earth’s surface by far exceeds al...
The increasing concerns for climate change and exhausting supply of traditional energy sources have ...
In order to sustainably meet the future humanity energy needs, alternative energy production techniq...
The remarkable achievement by Fujishima and Honda (1972) in the photo-electrochemical water splittin...
Due to the expected increases on energy demand in the near future, the development of new catalytic ...
Photocatalytic water splitting using sunlight is a promising technology capable of providing high en...
The performance of metal oxides such as titanium dioxide (TiO2), in the conversion of solar energy i...
Photocatalytic water splitting using sunlight is a promising technology capable of providing high en...
The generation of renewable energy through photocatalysis is an attractive option to utilize the abu...
The photocatalytic splitting of water into hydrogen and oxygen using solar energy is a challenging r...
Abstract: Hydrogen produced from water using photocatalysts driven by sunlight is a sustainable way ...
Solar energy as a green and renewable energy source shows great application potential in the near fu...
This chapter is focused on photoelectrochemical water splitting using titanium dioxide, TiO2, as the...
Nano-sized TiO2 photocatalytic water-splitting technology has great potential for low-cost, environm...
Researchers are intensively investigating photochemicalwater splitting as a means of converting sola...
Robust calculations show that the incidence of solar energy on the earth’s surface by far exceeds al...
The increasing concerns for climate change and exhausting supply of traditional energy sources have ...
In order to sustainably meet the future humanity energy needs, alternative energy production techniq...
The remarkable achievement by Fujishima and Honda (1972) in the photo-electrochemical water splittin...
Due to the expected increases on energy demand in the near future, the development of new catalytic ...
Photocatalytic water splitting using sunlight is a promising technology capable of providing high en...
The performance of metal oxides such as titanium dioxide (TiO2), in the conversion of solar energy i...
Photocatalytic water splitting using sunlight is a promising technology capable of providing high en...
The generation of renewable energy through photocatalysis is an attractive option to utilize the abu...
The photocatalytic splitting of water into hydrogen and oxygen using solar energy is a challenging r...
Abstract: Hydrogen produced from water using photocatalysts driven by sunlight is a sustainable way ...