Recently, high solar-to-hydrogen efficiencies were demonstrated using La and Rh co-doped SrTiO3 (La,Rh:SrTiO3) incorporated into a low-cost and scalable Z-scheme device, known as a photocatalyst sheet. However, the unique properties that enable La,Rh:SrTiO3 to support this impressive performance are not fully understood. Combining in situ spectroelectrochemical measurements with density functional theory and photoelectron spectroscopy produces a depletion model of Rh:SrTiO3 and La,Rh:SrTiO3 photocatalyst sheets. This reveals remarkable properties, such as deep flatband potentials (+2 V versus the reversible hydrogen electrode) and a Rh oxidation state dependent reorganization of the electronic structure, involving the loss of a vacant Rh 4d...
The occupied and unoccupied in-gap electronic states of a Rh-doped SrTiO<sub>3</sub> photocatalyst w...
Rh-doped and Rh/Sb codoped TiO2 and SrTiO3 powders have been synthesised by solid state reaction of ...
The quest for efficient utilization of solar light for the generation of hydrogen through water spli...
Recently, high solar-to-hydrogen efficiencies were demonstrated using La and Rh co-doped SrTiO3 (La,...
Recently, record solar to hydrogen efficiencies have been demonstrated using La,Rh co-doped SrTiO3 (...
In this thesis, the physical origin of efficient charge separation in La, Rh co-doped SrTiO3 ‘photo...
Overall water splitting with photocatalyst particles presents a potentially cost-effective pathway t...
Overall water splitting with photocatalyst particles presents a potentially cost-effective pathway t...
Photocatalytic water splitting is a viable approach to the large-scale production of renewable solar...
It is well known that doping of Rh into the SrTiO3 lattice introduces 4d donor levels within the ban...
Photocatalytic hydrogen evolution and carbon dioxide reduction using photocatalysts are expected as ...
Photocatalytic hydrogen evolution and carbon dioxide reduction using photocatalysts are expected as ...
Germanium is a small-gap semiconductor that efficiently absorbs visible light, resulting in photoexc...
The application of inorganic nanostructures for solar water splitting is currently limited by our un...
The application of inorganic nanostructures for solar water splitting is currently limited by our un...
The occupied and unoccupied in-gap electronic states of a Rh-doped SrTiO<sub>3</sub> photocatalyst w...
Rh-doped and Rh/Sb codoped TiO2 and SrTiO3 powders have been synthesised by solid state reaction of ...
The quest for efficient utilization of solar light for the generation of hydrogen through water spli...
Recently, high solar-to-hydrogen efficiencies were demonstrated using La and Rh co-doped SrTiO3 (La,...
Recently, record solar to hydrogen efficiencies have been demonstrated using La,Rh co-doped SrTiO3 (...
In this thesis, the physical origin of efficient charge separation in La, Rh co-doped SrTiO3 ‘photo...
Overall water splitting with photocatalyst particles presents a potentially cost-effective pathway t...
Overall water splitting with photocatalyst particles presents a potentially cost-effective pathway t...
Photocatalytic water splitting is a viable approach to the large-scale production of renewable solar...
It is well known that doping of Rh into the SrTiO3 lattice introduces 4d donor levels within the ban...
Photocatalytic hydrogen evolution and carbon dioxide reduction using photocatalysts are expected as ...
Photocatalytic hydrogen evolution and carbon dioxide reduction using photocatalysts are expected as ...
Germanium is a small-gap semiconductor that efficiently absorbs visible light, resulting in photoexc...
The application of inorganic nanostructures for solar water splitting is currently limited by our un...
The application of inorganic nanostructures for solar water splitting is currently limited by our un...
The occupied and unoccupied in-gap electronic states of a Rh-doped SrTiO<sub>3</sub> photocatalyst w...
Rh-doped and Rh/Sb codoped TiO2 and SrTiO3 powders have been synthesised by solid state reaction of ...
The quest for efficient utilization of solar light for the generation of hydrogen through water spli...