The energetic and electronic properties of F and/or Zr-doped anatase TiO2 are investigated by first-principles calculations. For F-doping, reduced Ti3+ ions are formed and Ti orbitals lie slightly below the conduction band, leading to band gap narrowing. For Zr-doping, Zr 4d orbitals reside well into the conduction band, with essentially no band gap change. For F/Zr–codoping, the electronic structure is similar to that for F–monodoping, where Ti3+ gap states are induced by both the oxygen vacancy and F dopant. The influence of oxygen vacancies indicates that interplay between dopants and oxygen vacancies is key for improvement of photocatalytic activity. The theoretical findings present a reasonable explanation of recent experimental result...
The structural and electronic properties of rutile and anatase, and the influence of both mono- and ...
The beneficial effects on ZnO and TiO2photocatalytic activity resulting from a suitable combination ...
A simple yet promising strategy to modify TiO2 band gap was achieved via dopants incorporation which...
By means of first-principles density functional theory (DFT) calculations, we study the effect of in...
Anatase TiO2 presents a large bandgap of 3.2 eV, which inhibits the use of visible light radiation (...
We present a comprehensive and improved density functional theory (DFT) calculation of anion-doped (...
The energetic and electronic structures of V-doped anatase TiO2 have been investigated systematicall...
The electronic properties and photocatalytic activity of S and/or Bi-doped anatase TiO2 are investig...
In this paper we investigated the effects of Fe-doping of the anatase TiO2 (1 0 1) surface on the cr...
The energetic and electronic properties of various P doping configurations at the rutile TiO2 (110) ...
By means of first-principles density functional theory (DFT) calculations, we study the effect of in...
The electronic properties and photocatalytic activity of X (N, C) / transition metal (TM=Ta, Hf, Fe)...
Photocatalysts are semiconductors that absorb light of sufficient energy leading to the generation o...
Density functional–pseudopotential calculations were performed to study the effects of hydrogen dopi...
The modification of bandgap of TiO2 was intensively studied for decades to improve its visible light...
The structural and electronic properties of rutile and anatase, and the influence of both mono- and ...
The beneficial effects on ZnO and TiO2photocatalytic activity resulting from a suitable combination ...
A simple yet promising strategy to modify TiO2 band gap was achieved via dopants incorporation which...
By means of first-principles density functional theory (DFT) calculations, we study the effect of in...
Anatase TiO2 presents a large bandgap of 3.2 eV, which inhibits the use of visible light radiation (...
We present a comprehensive and improved density functional theory (DFT) calculation of anion-doped (...
The energetic and electronic structures of V-doped anatase TiO2 have been investigated systematicall...
The electronic properties and photocatalytic activity of S and/or Bi-doped anatase TiO2 are investig...
In this paper we investigated the effects of Fe-doping of the anatase TiO2 (1 0 1) surface on the cr...
The energetic and electronic properties of various P doping configurations at the rutile TiO2 (110) ...
By means of first-principles density functional theory (DFT) calculations, we study the effect of in...
The electronic properties and photocatalytic activity of X (N, C) / transition metal (TM=Ta, Hf, Fe)...
Photocatalysts are semiconductors that absorb light of sufficient energy leading to the generation o...
Density functional–pseudopotential calculations were performed to study the effects of hydrogen dopi...
The modification of bandgap of TiO2 was intensively studied for decades to improve its visible light...
The structural and electronic properties of rutile and anatase, and the influence of both mono- and ...
The beneficial effects on ZnO and TiO2photocatalytic activity resulting from a suitable combination ...
A simple yet promising strategy to modify TiO2 band gap was achieved via dopants incorporation which...