GaP, with its large band gap of 2.26 eV (indirect) and 2.78 eV (direct), is a very promising candidate for direct photoelectrochemical water splitting. Herein, p-GaP(100) is investigated as a photocathode for hydrogen generation. The samples are characterized after each preparation step regarding how their photoelectrochemical behavior is influenced by surface composition and structure using a combination of electrochemical and surface-science preparation and characterization techniques. The formation of an Ohmic back contact employing an annealed gold layer and the removal of the native oxides using various etchants are studied. It turns out that the latter has a pronounced effect on the surface composition and structure and therefore also...
International audienceHydrogen produced using artificial photosynthesis, i.e. solar splitting of wat...
Several new wide band gap semiconductor nanocomposite photocatalytic materials have been synthesized...
Harvesting sunlight, the ultimate renewable power source, in a cost-effective way has been long reco...
Solar water splitting is a promising approach to generate hydrogen as a sustainable fuel. In this pr...
A study has been undertaken of the detailed photoelectrochemistry of a number of III-V and oxide sem...
Photoelectrochemical (PEC) cells produce hydrogen gas through the sunlight driven electrolysis of wa...
Photoelectrochemical production of hydrogen by using sunlight to split water offers a sustainable a...
Efficient photoelectrochemical devices for water splitting benefit from the highest material quality...
We study the initial interaction of adsorbed H_2O with P-rich and Ga-rich GaP(100) surfaces. Atomica...
Abstractp-type GaP was systematically examined for photoelectrochemical water splitting. The influen...
We study the initial interaction of adsorbed H2O with P-rich and Ga-rich GaP(100) surfaces. Atomical...
Energy storage is a key challenge in solar driven renewable energy conversion. We promote a photoche...
Photoelectrochemical (PEC) water splitting is a promising approach to convert renewable solar energy...
We study the initial interaction of adsorbed H2O with P rich and Ga rich GaP 100 surfaces. Atomical...
Photoelectrochemical hydrogen production promises to be a renewable, clean, and efficient way of sto...
International audienceHydrogen produced using artificial photosynthesis, i.e. solar splitting of wat...
Several new wide band gap semiconductor nanocomposite photocatalytic materials have been synthesized...
Harvesting sunlight, the ultimate renewable power source, in a cost-effective way has been long reco...
Solar water splitting is a promising approach to generate hydrogen as a sustainable fuel. In this pr...
A study has been undertaken of the detailed photoelectrochemistry of a number of III-V and oxide sem...
Photoelectrochemical (PEC) cells produce hydrogen gas through the sunlight driven electrolysis of wa...
Photoelectrochemical production of hydrogen by using sunlight to split water offers a sustainable a...
Efficient photoelectrochemical devices for water splitting benefit from the highest material quality...
We study the initial interaction of adsorbed H_2O with P-rich and Ga-rich GaP(100) surfaces. Atomica...
Abstractp-type GaP was systematically examined for photoelectrochemical water splitting. The influen...
We study the initial interaction of adsorbed H2O with P-rich and Ga-rich GaP(100) surfaces. Atomical...
Energy storage is a key challenge in solar driven renewable energy conversion. We promote a photoche...
Photoelectrochemical (PEC) water splitting is a promising approach to convert renewable solar energy...
We study the initial interaction of adsorbed H2O with P rich and Ga rich GaP 100 surfaces. Atomical...
Photoelectrochemical hydrogen production promises to be a renewable, clean, and efficient way of sto...
International audienceHydrogen produced using artificial photosynthesis, i.e. solar splitting of wat...
Several new wide band gap semiconductor nanocomposite photocatalytic materials have been synthesized...
Harvesting sunlight, the ultimate renewable power source, in a cost-effective way has been long reco...