In this paper, real-time time-dependent density-functional theory (RT-TDDFT) calculations are performed to analyze the optical property and charge transitions of a single noble metal atom deposited on rutile TiO2 (110) surface. The model structures are built reflecting the equilibrium positions of deposited adatoms atop the TiO2 surface. The absorption spectra are calculated for all model structures under study. To provide deeper insight into photo-absorption processes, the transition contribution maps are computed for the states of deposited adatoms involved in transitions. Assuming the photon energy is enough to overcome the band gap of TiO2 (∼3 eV), the photogenerated electrons of TiO2 seem to be partly accumulated around deposited Au at...
Density functional theory and a pseudopotential plane wave method are applied to study electronic an...
Ag4–n–Aun (n = 1–3) clusters deposited on the surface of TiO2(101) are more efficient than titania a...
In reduced TiO2, electronic transitions originating from the Ti3+- induced states in the band gap ar...
This study was financially supported by Flag-ERA JTC To2Dox project (S.P.) and M-ERA-NET2 project Su...
Atomic and electronic structures of TiO2(110) surface with possible adsorptional, substitutional and...
Atomic and electronic structures of TiO2(110) surface with possible adsorptional, substitutional and...
Exploring new types of photocatalysts and modifying the photocatalytic activity have attracted more ...
International audienceA first-principle study of the stability and optical response of subnanometer ...
Adsorbed metal atoms and metal doping onto TiO2 can effectively enhance the optical and photocatalyt...
Density functional theory (DFT) calculations were performed to address the effects of 5d transition ...
The energetic and electronic properties of various P doping configurations at the rutile TiO2 (110) ...
Cataloged from PDF version of article.Atomic and electronic structures of TiO2(110) surface with pos...
In reduced TiO2, electronic transitions originating from the Ti3+- induced states in the band gap ar...
Point defects in metal oxides such as TiO2 are key to their applications in numerous technologies. T...
The structural, energetic and electronic properties of various S doping configurations by substituti...
Density functional theory and a pseudopotential plane wave method are applied to study electronic an...
Ag4–n–Aun (n = 1–3) clusters deposited on the surface of TiO2(101) are more efficient than titania a...
In reduced TiO2, electronic transitions originating from the Ti3+- induced states in the band gap ar...
This study was financially supported by Flag-ERA JTC To2Dox project (S.P.) and M-ERA-NET2 project Su...
Atomic and electronic structures of TiO2(110) surface with possible adsorptional, substitutional and...
Atomic and electronic structures of TiO2(110) surface with possible adsorptional, substitutional and...
Exploring new types of photocatalysts and modifying the photocatalytic activity have attracted more ...
International audienceA first-principle study of the stability and optical response of subnanometer ...
Adsorbed metal atoms and metal doping onto TiO2 can effectively enhance the optical and photocatalyt...
Density functional theory (DFT) calculations were performed to address the effects of 5d transition ...
The energetic and electronic properties of various P doping configurations at the rutile TiO2 (110) ...
Cataloged from PDF version of article.Atomic and electronic structures of TiO2(110) surface with pos...
In reduced TiO2, electronic transitions originating from the Ti3+- induced states in the band gap ar...
Point defects in metal oxides such as TiO2 are key to their applications in numerous technologies. T...
The structural, energetic and electronic properties of various S doping configurations by substituti...
Density functional theory and a pseudopotential plane wave method are applied to study electronic an...
Ag4–n–Aun (n = 1–3) clusters deposited on the surface of TiO2(101) are more efficient than titania a...
In reduced TiO2, electronic transitions originating from the Ti3+- induced states in the band gap ar...