Point defects in metal oxides such as TiO2 are key to their applications in numerous technologies. The investigation of thermally induced nonstoichiometry in TiO2 is complicated by the difficulties in preparing and determining a desired degree of nonstoichiometry. We study controlled self-doping of TiO2 by adsorption of 1/8 and 1/16 monolayer Ti at the (110) surface using a combination of experimental and computational approaches to unravel the details of the adsorption process and the oxidation state of Ti. Upon adsorption of Ti, x-ray and ultraviolet photoemission spectroscopy (XPS and UPS) show formation of reduced Ti. Comparison of pure density functional theory (DFT) with experiment shows that pure DFT provides an inconsistent descript...
The energetic and electronic properties of various P doping configurations at the rutile TiO2 (110) ...
We have employed a combination of experimental surface science techniques and density functional cal...
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...
Point defects in metal oxides such as TiO2 are key to their applications in numerous technologies. T...
Point defects in metal oxides such as TiO2 are key to their applications in numerous technologies. T...
Point defects in metal oxides such as TiO2 are key to their applications in numerous technologies. T...
Point defects in metal oxides such as TiO2 are key to their applications in numerous technologies. T...
We have employed a combination of experimental surface science techniques and density functional cal...
We have employed a combination of experimental surface science techniques and density functional cal...
We have employed a combination of experimental surface science techniques and density functional cal...
We have employed a combination of experimental surface science techniques and density functional cal...
We have employed a combination of experimental surface science techniques and density functional cal...
We have employed a combination of experimental surface science techniques and density functional cal...
We have employed a combination of experimental surface science techniques and density functional cal...
The energetic and electronic properties of various P doping configurations at the rutile TiO2 (110) ...
We have employed a combination of experimental surface science techniques and density functional cal...
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...
Point defects in metal oxides such as TiO2 are key to their applications in numerous technologies. T...
Point defects in metal oxides such as TiO2 are key to their applications in numerous technologies. T...
Point defects in metal oxides such as TiO2 are key to their applications in numerous technologies. T...
Point defects in metal oxides such as TiO2 are key to their applications in numerous technologies. T...
We have employed a combination of experimental surface science techniques and density functional cal...
We have employed a combination of experimental surface science techniques and density functional cal...
We have employed a combination of experimental surface science techniques and density functional cal...
We have employed a combination of experimental surface science techniques and density functional cal...
We have employed a combination of experimental surface science techniques and density functional cal...
We have employed a combination of experimental surface science techniques and density functional cal...
We have employed a combination of experimental surface science techniques and density functional cal...
The energetic and electronic properties of various P doping configurations at the rutile TiO2 (110) ...
We have employed a combination of experimental surface science techniques and density functional cal...
In reduced TiO2, electronic transitions originating from the Ti3+- induced states in the band gap ar...