Dissociative and molecular water adsorption on the anatase (001) surface is studied in the context of state-of-the-art density functional theory in large supercells suited for adsorption studies at various water coverage ratios. At low coverage values below 1/4 ML, water adsorption remains dissociative and a network of hydrogen bonds between the so formed hydroxyl groups favors the formation of a ridge surface structure. The hydroxyl patterned (4 × 4) surface thus undergoes a (2 × 4) reconstruction that causes the relief of the large tensile stress measured in the unreconstructed surface along the direction orthogonal to the ridge. This phenomenology is accompanied by the loss of reactivity of the reconstructed surface with respect...
The interaction of water with the MgO(001) surface under ambient conditions is investigated by densi...
International audienceThe interaction of water with extended defects such as mono- and diatomic step...
The adsorption properties of TiO2 surfaces with biological environments have shown to be very import...
Dissociative and molecular water adsorption on the anatase (001) surface is studied in the context ...
TiO 2 anatase (001) surface has been indicated for many years as a potential system for water dissoc...
TiO 2 anatase (001) surface has been indicated for many years as a potential system for wate...
An understanding of the interaction of water with the anatase(101) surface is crucial for developing...
Determining the structure of water on metal oxide surfaces is a key step toward a molecular-level un...
Titanium dioxide in the anatase configuration plays an increasingly important role in photo electro ...
ABSTRACT: We investigate the adsorption and decomposition states of a water molecule on a Ga-rich Ga...
The hydration structure of water molecule adsorption at different coverages of a monolayer on a pyri...
The interaction of water with solid surfaces is key to a wide variety of industrial and natural proc...
Titanium dioxide in the anatase configuration plays an increasingly important role for photo(electro...
The molecular structure and interactions of interfacial water, i.e., the first monolayers of water a...
O<sub>2</sub> adsorption and dissociation on a hydrogenated anatase (101) surface are studied with f...
The interaction of water with the MgO(001) surface under ambient conditions is investigated by densi...
International audienceThe interaction of water with extended defects such as mono- and diatomic step...
The adsorption properties of TiO2 surfaces with biological environments have shown to be very import...
Dissociative and molecular water adsorption on the anatase (001) surface is studied in the context ...
TiO 2 anatase (001) surface has been indicated for many years as a potential system for water dissoc...
TiO 2 anatase (001) surface has been indicated for many years as a potential system for wate...
An understanding of the interaction of water with the anatase(101) surface is crucial for developing...
Determining the structure of water on metal oxide surfaces is a key step toward a molecular-level un...
Titanium dioxide in the anatase configuration plays an increasingly important role in photo electro ...
ABSTRACT: We investigate the adsorption and decomposition states of a water molecule on a Ga-rich Ga...
The hydration structure of water molecule adsorption at different coverages of a monolayer on a pyri...
The interaction of water with solid surfaces is key to a wide variety of industrial and natural proc...
Titanium dioxide in the anatase configuration plays an increasingly important role for photo(electro...
The molecular structure and interactions of interfacial water, i.e., the first monolayers of water a...
O<sub>2</sub> adsorption and dissociation on a hydrogenated anatase (101) surface are studied with f...
The interaction of water with the MgO(001) surface under ambient conditions is investigated by densi...
International audienceThe interaction of water with extended defects such as mono- and diatomic step...
The adsorption properties of TiO2 surfaces with biological environments have shown to be very import...