The large intrinsic band gap in TiO2 has hindered severely its potential application for visible-light irradiation. In this study, we have used a passivated approach to modify the band edges of anatase-TiO2 by codoping of X (N, C) with transition metals (TM=W, Re, Os) to extend the absorption edge to longer visible-light wavelengths. It was found that all the codoped systems can narrow the band gap significantly; in particular, (N+W)-codoped systems could serve as remarkably better photocatalysts with both narrowing of the band gap and relatively smaller formation energies and larger binding energies than those of (C+TM) and (N+TM)-codoped systems. Our theoretical calculations provide meaningful guides for experiments to develop more powerf...
The electronic properties and photocatalytic activity of S and/or Bi-doped anatase TiO2 are investig...
The electronic properties and photocatalytic activity of X (N, C) / transition metal (TM=Ta, Hf, Fe)...
To improve the photoelectrochemical activity of TiO2 for hydrogen production through water splitting...
The large intrinsic band gap in TiO2 has hindered severely its potential application for visible-lig...
The electronic properties and photocatalytic activity of X (N, C) / transition metal (TM=Ta, Hf, Fe)...
Modification of TiO2 to increase its visible light activity and promote higher performance photocata...
Modification of TiO2 to increase its visible light activity and promote higher performance photocata...
Substitutional N to O and M to Ti (M = Pt, V, Sb) codoped rutile TiO2 was investigated using density...
Ab initio computer aided design drastically increases candidate population for highly specified mate...
Ab initio computer aided design drastically increases candidate population for highly specified mate...
Ab initio computer aided design drastically increases candidate population for highly specified mate...
Substitutional N to O and M to Ti (M = Pt, V, Sb) codoped rutile TiO2 was investigated using density...
Codopant is an effective approach to modify the bandgap and band edge positions of transition metal ...
The electronic properties and photocatalytic activity of nitrogen (N) and/or tungsten (W)-doped anat...
In this study, we have performed first-principles screened exchanged hybrid density function theory ...
The electronic properties and photocatalytic activity of S and/or Bi-doped anatase TiO2 are investig...
The electronic properties and photocatalytic activity of X (N, C) / transition metal (TM=Ta, Hf, Fe)...
To improve the photoelectrochemical activity of TiO2 for hydrogen production through water splitting...
The large intrinsic band gap in TiO2 has hindered severely its potential application for visible-lig...
The electronic properties and photocatalytic activity of X (N, C) / transition metal (TM=Ta, Hf, Fe)...
Modification of TiO2 to increase its visible light activity and promote higher performance photocata...
Modification of TiO2 to increase its visible light activity and promote higher performance photocata...
Substitutional N to O and M to Ti (M = Pt, V, Sb) codoped rutile TiO2 was investigated using density...
Ab initio computer aided design drastically increases candidate population for highly specified mate...
Ab initio computer aided design drastically increases candidate population for highly specified mate...
Ab initio computer aided design drastically increases candidate population for highly specified mate...
Substitutional N to O and M to Ti (M = Pt, V, Sb) codoped rutile TiO2 was investigated using density...
Codopant is an effective approach to modify the bandgap and band edge positions of transition metal ...
The electronic properties and photocatalytic activity of nitrogen (N) and/or tungsten (W)-doped anat...
In this study, we have performed first-principles screened exchanged hybrid density function theory ...
The electronic properties and photocatalytic activity of S and/or Bi-doped anatase TiO2 are investig...
The electronic properties and photocatalytic activity of X (N, C) / transition metal (TM=Ta, Hf, Fe)...
To improve the photoelectrochemical activity of TiO2 for hydrogen production through water splitting...