Here we report a sustainable process for photo-induced hydrogen production from aqueous solutions of oxygenated hydrocarbons. Doping N and B into TiO2 noticeably improves its activity for hydrogen production. The addition of oxygenated hydrocarbons into water serves both as a hydrogen source and as an electron donor, which substantially enhances hydrogen production as compared with that for the photo-catalytic splitting of pure water. Other biomass-derived compounds such as glucose and sucrose are also shown to have potential for hydrogen production by this photo-catalytic conversion. © 2008 International Association for Hydrogen Energy
Efficient H2 production by photocatalytic water splitting under visible light over modified TiO2-bas...
Efficient H2 production by photocatalytic water splitting under visible light over modified TiO2-bas...
Fossil fuels (coal, natural gas, crude oil) play an important role as an energy source and in the pr...
Precious metal-titania materials make good catalysts for hydrogen production from a variety of organ...
Precious metal-titania materials make good catalysts for hydrogen production from a variety of organ...
Precious metal-titania materials make good catalysts for hydrogen production from a variety of organ...
The utilization of sacrificial reagents is one of the most common strategies to accelerate hydrogen ...
This paper focused for the first time on the comparison between three different approach to modify t...
Photocatalytic water splitting is one of the most important renewable paths and a reliable hydrogen ...
H2 is gaining attention as energy vector, particularly if produced from renewable sources.It may be ...
H2 is gaining attention as energy vector, particularly if produced from renewable sources. It may b...
Hydrogen can be produced photocatalytically employing titanium dioxide-based materials, either throu...
The photocatalytic production of hydrogen from water solutions has been thoroughly investigated in r...
While researchers are trying to solve the world\u27s energy woes, hydrogen is becoming the key compo...
The photocatalytic production of H2 from water is seen as a promising way for the storage of solar l...
Efficient H2 production by photocatalytic water splitting under visible light over modified TiO2-bas...
Efficient H2 production by photocatalytic water splitting under visible light over modified TiO2-bas...
Fossil fuels (coal, natural gas, crude oil) play an important role as an energy source and in the pr...
Precious metal-titania materials make good catalysts for hydrogen production from a variety of organ...
Precious metal-titania materials make good catalysts for hydrogen production from a variety of organ...
Precious metal-titania materials make good catalysts for hydrogen production from a variety of organ...
The utilization of sacrificial reagents is one of the most common strategies to accelerate hydrogen ...
This paper focused for the first time on the comparison between three different approach to modify t...
Photocatalytic water splitting is one of the most important renewable paths and a reliable hydrogen ...
H2 is gaining attention as energy vector, particularly if produced from renewable sources.It may be ...
H2 is gaining attention as energy vector, particularly if produced from renewable sources. It may b...
Hydrogen can be produced photocatalytically employing titanium dioxide-based materials, either throu...
The photocatalytic production of hydrogen from water solutions has been thoroughly investigated in r...
While researchers are trying to solve the world\u27s energy woes, hydrogen is becoming the key compo...
The photocatalytic production of H2 from water is seen as a promising way for the storage of solar l...
Efficient H2 production by photocatalytic water splitting under visible light over modified TiO2-bas...
Efficient H2 production by photocatalytic water splitting under visible light over modified TiO2-bas...
Fossil fuels (coal, natural gas, crude oil) play an important role as an energy source and in the pr...