Germanium is a small-gap semiconductor that efficiently absorbs visible light, resulting in photoexcited electrons predicted to be sufficiently energetic to reduce H2O for H2 gas evolution. In order to protect the surface from corrosion and prevent surface charge recombination in contact with aqueous pH 7 electrolyte, we grew epitaxial SrTiO3 layers of different thicknesses on p-Ge (001) surfaces. Four-nanometer SrTiO3 allows photogenerated electrons to reach the surface and evolve H2 gas, while 13 nm SrTiO3 blocks these electrons. Ambient pressure x-ray photoelectron spectroscopy indicates that the surface readily dissociates H2O to form OH species, which may impact surface band bending
The experimental study of the bonding geometry of a (100)Ge surface exposed to H₂S in the gas phase ...
Water splitting using a semiconductor photocatalyst has been extensively studied as a means of solar...
GaP, with its large band gap of 2.26 eV (indirect) and 2.78 eV (direct), is a very promising candida...
Germanium is a small-gap semiconductor that efficiently absorbs visible light, resulting in photoexc...
A major goal of energy research is to use visible light to cleave water directly, without an applied...
A study has been undertaken of the detailed photoelectrochemistry of a number of III-V and oxide sem...
International audienceThe metallic band structure of the hydrogen-adsorbed SrTiO3(001) surface is st...
Gallium telluride (GaTe) is a van der Waals semiconductor, currently adopted for photonic and optoel...
Recently, high solar-to-hydrogen efficiencies were demonstrated using La and Rh co-doped SrTiO3 (La,...
Photoelectrochemical hydrogen production promises to be a renewable, clean, and efficient way of sto...
Recently, high solar-to-hydrogen efficiencies were demonstrated using La and Rh co-doped SrTiO3 (La,...
The rapidly increasing global demand for energy, combined with the environmental impact of fossil fu...
The high efficiency of SrTiO3 in the reaction of heterogeneous photocatalysis needs a suitable archi...
Recently, record solar to hydrogen efficiencies have been demonstrated using La,Rh co-doped SrTiO3 (...
International audienceFunctional oxides and phenomena such as a 2D electron gas (2DEG) at oxide inte...
The experimental study of the bonding geometry of a (100)Ge surface exposed to H₂S in the gas phase ...
Water splitting using a semiconductor photocatalyst has been extensively studied as a means of solar...
GaP, with its large band gap of 2.26 eV (indirect) and 2.78 eV (direct), is a very promising candida...
Germanium is a small-gap semiconductor that efficiently absorbs visible light, resulting in photoexc...
A major goal of energy research is to use visible light to cleave water directly, without an applied...
A study has been undertaken of the detailed photoelectrochemistry of a number of III-V and oxide sem...
International audienceThe metallic band structure of the hydrogen-adsorbed SrTiO3(001) surface is st...
Gallium telluride (GaTe) is a van der Waals semiconductor, currently adopted for photonic and optoel...
Recently, high solar-to-hydrogen efficiencies were demonstrated using La and Rh co-doped SrTiO3 (La,...
Photoelectrochemical hydrogen production promises to be a renewable, clean, and efficient way of sto...
Recently, high solar-to-hydrogen efficiencies were demonstrated using La and Rh co-doped SrTiO3 (La,...
The rapidly increasing global demand for energy, combined with the environmental impact of fossil fu...
The high efficiency of SrTiO3 in the reaction of heterogeneous photocatalysis needs a suitable archi...
Recently, record solar to hydrogen efficiencies have been demonstrated using La,Rh co-doped SrTiO3 (...
International audienceFunctional oxides and phenomena such as a 2D electron gas (2DEG) at oxide inte...
The experimental study of the bonding geometry of a (100)Ge surface exposed to H₂S in the gas phase ...
Water splitting using a semiconductor photocatalyst has been extensively studied as a means of solar...
GaP, with its large band gap of 2.26 eV (indirect) and 2.78 eV (direct), is a very promising candida...