Solar water splitting is a promising approach to generate hydrogen as a sustainable fuel. In this process, intermittent sunlight is absorbed by a semiconductor. The thereby excited charge carriers oxidise water to oxygen and reduce protons to hydrogen, effectively storing solar energy in chemical bonds. The challenges of this approach to energy conversion mainly arise due to the peculiarities of the solid liquid phase boundary, over which the charge carriers have to be transferred. This interface can induce corrosion, charge carrier recombination, or hinder charge carrier extractability to the electrolyte. A detailed understanding of the semiconductor surface and its interaction with the electrolyte is therefore desirable to facilitate an a...
Efficient photovoltaic tandem cells made of III-V semiconductors open a promising way for the realiz...
We study the initial interaction of adsorbed H2O with P rich and Ga rich GaP 100 surfaces. Atomical...
Photoelectrochemical (PEC) water splitting is a promising approach to convert renewable solar energy...
In this work, we investigate the initial interaction of water and oxygen with different surface reco...
GaP, with its large band gap of 2.26 eV (indirect) and 2.78 eV (direct), is a very promising candida...
Semiconductors designated for solar water splitting need to be simultaneously stable and efficient i...
In this work, we investigate the initial interaction of water and oxygen with different surface reco...
Energy storage is a key challenge in solar driven renewable energy conversion. We promote a photoche...
We study the initial interaction of adsorbed H_2O with P-rich and Ga-rich GaP(100) surfaces. Atomica...
We study the initial interaction of adsorbed H2O with P-rich and Ga-rich GaP(100) surfaces. Atomical...
Semiconductors designated for solar water-splitting need to be simultaneously stable and efficient i...
The material class of III V semiconductors allows the design of highly efficient absorbers for light...
Semiconductors designated for solar water-splitting need to be simultaneously stable and efficient i...
With increasing demand for oil, the fossil fuels used to power society’s vehicles and homes are beco...
Efficient photoelectrochemical devices for water splitting benefit from the highest material quality...
Efficient photovoltaic tandem cells made of III-V semiconductors open a promising way for the realiz...
We study the initial interaction of adsorbed H2O with P rich and Ga rich GaP 100 surfaces. Atomical...
Photoelectrochemical (PEC) water splitting is a promising approach to convert renewable solar energy...
In this work, we investigate the initial interaction of water and oxygen with different surface reco...
GaP, with its large band gap of 2.26 eV (indirect) and 2.78 eV (direct), is a very promising candida...
Semiconductors designated for solar water splitting need to be simultaneously stable and efficient i...
In this work, we investigate the initial interaction of water and oxygen with different surface reco...
Energy storage is a key challenge in solar driven renewable energy conversion. We promote a photoche...
We study the initial interaction of adsorbed H_2O with P-rich and Ga-rich GaP(100) surfaces. Atomica...
We study the initial interaction of adsorbed H2O with P-rich and Ga-rich GaP(100) surfaces. Atomical...
Semiconductors designated for solar water-splitting need to be simultaneously stable and efficient i...
The material class of III V semiconductors allows the design of highly efficient absorbers for light...
Semiconductors designated for solar water-splitting need to be simultaneously stable and efficient i...
With increasing demand for oil, the fossil fuels used to power society’s vehicles and homes are beco...
Efficient photoelectrochemical devices for water splitting benefit from the highest material quality...
Efficient photovoltaic tandem cells made of III-V semiconductors open a promising way for the realiz...
We study the initial interaction of adsorbed H2O with P rich and Ga rich GaP 100 surfaces. Atomical...
Photoelectrochemical (PEC) water splitting is a promising approach to convert renewable solar energy...