Alkaline-earth metallic dopant can improve the performance of anatase TiO2 in photocatalysis and solar cells. Aiming to understand doping mechanisms, the dopant formation energies, electronic structures, and optical properties for Be, Mg, Ca, Sr, and Ba doped anatase TiO2 are investigated by using density functional theory calculations with the HSE06 and PBE functionals. By combining our results with those of previous studies, the HSE06 functional provides a better description of electronic structures. The calculated formation energies indicate that the substitution of a lattice Ti with an AEM atom is energetically favorable under O-rich growth conditions. The electronic structures suggest that, AEM dopants shift the valence bands (VBs) to ...
Photocatalysts are semiconductors that absorb light of sufficient energy leading to the generation o...
The electronic structures of sulfur (S) or carbon (C)-doped TiO2 anatase (101) surfaces have been in...
Adsorbed metal atoms and metal doping onto TiO2 can effectively enhance the optical and photocatalyt...
The electronic and optical properties of the rare earth metal atom-doped anatase TiO2 have been inve...
In this paper we investigated the effects of Fe-doping of the anatase TiO2 (1 0 1) surface on the cr...
The modification of bandgap of TiO2 was intensively studied for decades to improve its visible light...
In order to provide insight into the influence of co-doping with boron (B) and transition metals (TM...
By means of first-principles density functional theory (DFT) calculations, we study the effect of in...
Study of fundamental physical properties of titanium dioxide (TiO2) is crucial to determine its pote...
Density functional theory (DFT) calculations were performed to address the effects of 5d transition ...
We present a comprehensive and improved density functional theory (DFT) calculation of anion-doped (...
The structural and electronic properties of rutile and anatase, and the influence of both mono- and ...
The energetic and electronic structures of V-doped anatase TiO2 have been investigated systematicall...
Substitutional N to O and M to Ti (M = Pt, V, Sb) codoped rutile TiO2 was investigated using density...
The optical properties of rutile and anatase titanium dioxide (TiO2) are calculated from the imagina...
Photocatalysts are semiconductors that absorb light of sufficient energy leading to the generation o...
The electronic structures of sulfur (S) or carbon (C)-doped TiO2 anatase (101) surfaces have been in...
Adsorbed metal atoms and metal doping onto TiO2 can effectively enhance the optical and photocatalyt...
The electronic and optical properties of the rare earth metal atom-doped anatase TiO2 have been inve...
In this paper we investigated the effects of Fe-doping of the anatase TiO2 (1 0 1) surface on the cr...
The modification of bandgap of TiO2 was intensively studied for decades to improve its visible light...
In order to provide insight into the influence of co-doping with boron (B) and transition metals (TM...
By means of first-principles density functional theory (DFT) calculations, we study the effect of in...
Study of fundamental physical properties of titanium dioxide (TiO2) is crucial to determine its pote...
Density functional theory (DFT) calculations were performed to address the effects of 5d transition ...
We present a comprehensive and improved density functional theory (DFT) calculation of anion-doped (...
The structural and electronic properties of rutile and anatase, and the influence of both mono- and ...
The energetic and electronic structures of V-doped anatase TiO2 have been investigated systematicall...
Substitutional N to O and M to Ti (M = Pt, V, Sb) codoped rutile TiO2 was investigated using density...
The optical properties of rutile and anatase titanium dioxide (TiO2) are calculated from the imagina...
Photocatalysts are semiconductors that absorb light of sufficient energy leading to the generation o...
The electronic structures of sulfur (S) or carbon (C)-doped TiO2 anatase (101) surfaces have been in...
Adsorbed metal atoms and metal doping onto TiO2 can effectively enhance the optical and photocatalyt...