An understanding of the interaction of water with the anatase(101) surface is crucial for developing strategies to improve the efficiency of the photocatalytic reaction involved in solar water splitting. Despite a number of previous investigations, it is still not clear if water preferentially adsorbs in its molecular or dissociated form on anatase(101). With the aim of shedding some light on this controversial issue, we report the results of periodic screened-exchange density functional theory calculations of the dissociative, molecular, and mixed adsorption modes on the anatase(101) surface at various coverages. Our calculations support the suggestion that surface-adsorbed OH groups are present, which has been made on the basis of recentl...
TiO 2 anatase (001) surface has been indicated for many years as a potential system for wate...
The molecular structure and interactions of interfacial water, i.e., the first monolayers of water a...
Elucidating the structure of the interface between natural (reduced) anatase TiO2 (101) and water is...
Titanium dioxide in the anatase configuration plays an increasingly important role in photo electro ...
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...
Anatase TiO2 provides photoactivity with high chemical stability at a reasonable cost. Different met...
Anatase TiO2 provides photoactivity with high chemical stability at a reasonable cost. Different met...
The observation of photocatalytic water splitting on the surface of anatase TiO2 crystals has stimu...
Dissociative and molecular water adsorption on the anatase (001) surface is studied in the context ...
Theoretical methods can be used to describe surface chemical reactions in detail and with sufficient...
The adsorption properties of TiO2 surfaces with biological environments have shown to be very import...
The nature of peculiar, short H bonds formed by water molecules in contact with the (101) anatase su...
Anatase TiO 2 provides photoactivity with high chemical stability at a reasonable cost. Different me...
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...
The molecular structure and interactions of interfacial water, i.e., the first monolayers of water a...
Elucidating the structure of the interface between natural (reduced) anatase TiO2 (101) and water is...
Titanium dioxide in the anatase configuration plays an increasingly important role in photo electro ...
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...
Anatase TiO2 provides photoactivity with high chemical stability at a reasonable cost. Different met...
Anatase TiO2 provides photoactivity with high chemical stability at a reasonable cost. Different met...
The observation of photocatalytic water splitting on the surface of anatase TiO2 crystals has stimu...
Dissociative and molecular water adsorption on the anatase (001) surface is studied in the context ...
Theoretical methods can be used to describe surface chemical reactions in detail and with sufficient...
The adsorption properties of TiO2 surfaces with biological environments have shown to be very import...
The nature of peculiar, short H bonds formed by water molecules in contact with the (101) anatase su...
Anatase TiO 2 provides photoactivity with high chemical stability at a reasonable cost. Different me...
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...
The molecular structure and interactions of interfacial water, i.e., the first monolayers of water a...
Elucidating the structure of the interface between natural (reduced) anatase TiO2 (101) and water is...