International audienceWe report a density-functional theory (DFT)-based study of the interface of bulk water with a prototypical oxide surface, MgO(001), and focus our study on the often-overlooked surface electric field. In particular, we observe that the bare MgO(001) surface, although charge-neutral and defectless, has an intense electric field on the Å scale. The MgO(001) surface covered with 1 water monolayer (1 ML) is investigated via a supercell accounting for the experimentally-observed (2 × 3) reconstruction, stable at ambient temperature, and in which two out of six water molecules are dissociated. This 1 ML-hydrated surface is also found to have a high, albeit short-ranged, normal component of the field. Finally, the oxide/water ...
The dissociation of water is an important step in many chemical processes at solid surfaces. In part...
The structure of electric double layers (EDLs) dictates the chemistry and the physics of electrified...
Mineral surfaces are known for their catalytic properties, as they lower kinetic bar- riers to react...
International audienceWe report a density-functional theory (DFT)-based study of the interface of bu...
Surfaces of main group and transition metal oxides are covered by a layer of adsorbed water molecule...
We apply first-principles molecular dynamics and static calculations in the study of several layers ...
We have applied a novel theoretical and computational method called CECILIA (combined embedded clust...
Understanding effective energy-conversion systems and dealing with the problem of intermittency thro...
International audienceThe interaction of water with extended defects such as mono- and diatomic step...
Mineral surfaces are thought to be of importance to prebiotic chemistry due to their catalytic prope...
Many chemical and physical phenomena in nature, in industrial processes, and in our daily lives take...
The aqueous interfaces of metal oxides play an important role in geochemical processes, catalysis, a...
The interaction of water with the MgO(001) surface under ambient conditions is investigated by densi...
International audienceWithin the general context of the electrochemical oxygen evolution reaction of...
The structure and energetics of water on MgO(100) surfaces are studied by atomic force microscopy (A...
The dissociation of water is an important step in many chemical processes at solid surfaces. In part...
The structure of electric double layers (EDLs) dictates the chemistry and the physics of electrified...
Mineral surfaces are known for their catalytic properties, as they lower kinetic bar- riers to react...
International audienceWe report a density-functional theory (DFT)-based study of the interface of bu...
Surfaces of main group and transition metal oxides are covered by a layer of adsorbed water molecule...
We apply first-principles molecular dynamics and static calculations in the study of several layers ...
We have applied a novel theoretical and computational method called CECILIA (combined embedded clust...
Understanding effective energy-conversion systems and dealing with the problem of intermittency thro...
International audienceThe interaction of water with extended defects such as mono- and diatomic step...
Mineral surfaces are thought to be of importance to prebiotic chemistry due to their catalytic prope...
Many chemical and physical phenomena in nature, in industrial processes, and in our daily lives take...
The aqueous interfaces of metal oxides play an important role in geochemical processes, catalysis, a...
The interaction of water with the MgO(001) surface under ambient conditions is investigated by densi...
International audienceWithin the general context of the electrochemical oxygen evolution reaction of...
The structure and energetics of water on MgO(100) surfaces are studied by atomic force microscopy (A...
The dissociation of water is an important step in many chemical processes at solid surfaces. In part...
The structure of electric double layers (EDLs) dictates the chemistry and the physics of electrified...
Mineral surfaces are known for their catalytic properties, as they lower kinetic bar- riers to react...