Photoelectrochemical hydrogen production from solar energy and water offers a clean and sustainable fuel option for the future. Planar III/V material systems have shown the highest efficiencies, but are expensive. By moving to the nanowire regime the demand on material quantity is reduced, and new materials can be uncovered, such as wurtzite gallium phosphide, featuring a direct bandgap. This is one of the few materials combining large solar light absorption and (close to) ideal band-edge positions for full water splitting. Here we report the photoelectrochemical reduction of water, on a p-type wurtzite gallium phosphide nanowire photocathode. By modifying geometry to reduce electrical resistance and enhance optical absorption, and modifyin...
Conversion of solar energy to storable chemical energy has received considerable interest in the pas...
The solar energy conversion efficiency of photoelectrochemical (PEC) devices is usually limited by p...
Solar and seawater are the ultimate energy resources on earth, and together constitute a potential s...
Photoelectrochemical hydrogen production from solar energy and water offers a clean and sustainable ...
Photoelectrochemical (PEC) water splitting into hydrogen and oxygen is a promising strategy to absor...
Gallium phosphide (GaP) is a technically mature material widely used for LEDs with excellent optoele...
ABSTRACT: Gallium phosphide (GaP) nanowire photocathodes synthesized using a surfactant-free solutio...
Semiconductor nanowire arrays are expected to be advantageous for photoelectrochemical energy conver...
Semiconductor nanowire arrays are expected to be advantageous for photoelectrochemical energy conver...
We investigated the photoelectrochemical properties of both n- and p-type (In,Ga)N nanowires (NWs) f...
This review concerns the efficient conversion of sunlight into chemical fuels through the photoelect...
We investigated the photoelectrochemical properties of both n and p type In,Ga N nanowires NWs ...
Platinum is a highly active and acid stable electrocatalyst for the hydrogen evolution reaction (HER...
Conversion of solar energy to storable chemical energy has received considerable interest in the pas...
The solar energy conversion efficiency of photoelectrochemical (PEC) devices is usually limited by p...
Solar and seawater are the ultimate energy resources on earth, and together constitute a potential s...
Photoelectrochemical hydrogen production from solar energy and water offers a clean and sustainable ...
Photoelectrochemical (PEC) water splitting into hydrogen and oxygen is a promising strategy to absor...
Gallium phosphide (GaP) is a technically mature material widely used for LEDs with excellent optoele...
ABSTRACT: Gallium phosphide (GaP) nanowire photocathodes synthesized using a surfactant-free solutio...
Semiconductor nanowire arrays are expected to be advantageous for photoelectrochemical energy conver...
Semiconductor nanowire arrays are expected to be advantageous for photoelectrochemical energy conver...
We investigated the photoelectrochemical properties of both n- and p-type (In,Ga)N nanowires (NWs) f...
This review concerns the efficient conversion of sunlight into chemical fuels through the photoelect...
We investigated the photoelectrochemical properties of both n and p type In,Ga N nanowires NWs ...
Platinum is a highly active and acid stable electrocatalyst for the hydrogen evolution reaction (HER...
Conversion of solar energy to storable chemical energy has received considerable interest in the pas...
The solar energy conversion efficiency of photoelectrochemical (PEC) devices is usually limited by p...
Solar and seawater are the ultimate energy resources on earth, and together constitute a potential s...