In this work, we investigate the initial interaction of water and oxygen with different surface reconstructions of GaP(100) applying photoelectron spectroscopy, low-energy electron diffraction, and reflection anisotropy spectroscopy. Surfaces were prepared by metal-organic vapour phase epitaxy, transferred to ultra-high vacuum, and exposed to oxygen or water vapour at room temperature. The (2 4) reconstructed, Ga-rich surface is more sensitive and reactive to adsorption, bearing a less ordered surface reconstruction upon exposure and indicating a mixture of dissociative and molecular water adsorption. The p(2 2)=c(4 2) P-rich surface, on the other hand, is less reactive, but shows a new surface symmetry after water adsorption. Correlating f...
Energy storage is a key challenge in solar-driven renewable energy conversion. We promote a photoche...
The initial interaction of water with semiconductors determines the electronic structure of the soli...
Energy storage is a key challenge in solar driven renewable energy conversion. We promote a photoche...
In this work, we investigate the initial interaction of water and oxygen with different surface reco...
In this work, we investigate the initial interaction of water and oxygen with different surface reco...
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...
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...
Semiconductors designated for solar water splitting need to be simultaneously stable and efficient i...
The initial interaction of water with semiconductors determines the electronic structure of the soli...
The initial interaction of water with semiconductors determines the electronic structure of the soli...
Semiconductors designated for solar water-splitting need to be simultaneously stable and efficient i...
Solar water splitting is a promising approach to generate hydrogen as a sustainable fuel. In this pr...
Indium phosphide and derived compound semiconductors are materials often involved in high-efficiency...
Energy storage is a key challenge in solar-driven renewable energy conversion. We promote a photoche...
The initial interaction of water with semiconductors determines the electronic structure of the soli...
Energy storage is a key challenge in solar driven renewable energy conversion. We promote a photoche...
In this work, we investigate the initial interaction of water and oxygen with different surface reco...
In this work, we investigate the initial interaction of water and oxygen with different surface reco...
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...
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...
Semiconductors designated for solar water splitting need to be simultaneously stable and efficient i...
The initial interaction of water with semiconductors determines the electronic structure of the soli...
The initial interaction of water with semiconductors determines the electronic structure of the soli...
Semiconductors designated for solar water-splitting need to be simultaneously stable and efficient i...
Solar water splitting is a promising approach to generate hydrogen as a sustainable fuel. In this pr...
Indium phosphide and derived compound semiconductors are materials often involved in high-efficiency...
Energy storage is a key challenge in solar-driven renewable energy conversion. We promote a photoche...
The initial interaction of water with semiconductors determines the electronic structure of the soli...
Energy storage is a key challenge in solar driven renewable energy conversion. We promote a photoche...