The formation of a native oxide layer on the Ti(0001) surface is studied by means of FPMD simulations. In agreement with experimental findings, at low temperature we observe quick saturation of the surface reactivity, whereas incorporation of further O2 molecules in the oxide network takes place after thermal annealing at 800 K. At an O coverage of 2 ML the oxide layer presents an amorphous structure, an approximate TiO stoichiometry, and a broad distribution of Ti oxidation states from + 1 to + 4. We find consistency between the computed Bader atomic charges on Ti atoms and the correspondent charges computed classically by simple electrostatic minimization methods. On this basis we develop an analytic potential to simulate Ti/TiOx interfac...
The well-known corrosion resistance and biocompatibility of TiN depend on the structural and chemica...
Oxides enter our everyday life and exhibit an impressive variety of physical and chemical properties...
Diffusion of Ti through the TiO2 (110) rutile surface plays a key role in the growth and reactivity ...
In order to investigate the surface properties of metals in a realistic fashion it is crucial to tak...
The behavior of titanium implants in physiological environments is governed by the thin oxide layer ...
We carry out first principles computations to understand mechanisms of oxygen accommodation on titan...
We perform first-principles calculations to investigate the initial stages of titanium nanoparticle ...
In this work, advanced first-principles molecular dynamics (FPMD) based on density-functional theory...
Oxidized titanium surfaces resulting from various processes have been structurally characterized by ...
We have constructed the surface phase diagrams for oxygen adsorption on γ-TiAl low-index surfaces us...
In this dissertation, I present four projects on the fundamental study of the surface configurations...
Point defects in metal oxides such as TiO2 are key to their applications in numerous technologies. T...
The rutile TiO{sub 2} (110) (1x1) surface is considered the prototypical ''well-defined'' system in ...
In this work, advanced first-principles molecular dynamics (FPMD) based on density-functional theory...
Highly reduced surface reconstructions of BaTiO<sub>3</sub> (001) have been found to be composed of ...
The well-known corrosion resistance and biocompatibility of TiN depend on the structural and chemica...
Oxides enter our everyday life and exhibit an impressive variety of physical and chemical properties...
Diffusion of Ti through the TiO2 (110) rutile surface plays a key role in the growth and reactivity ...
In order to investigate the surface properties of metals in a realistic fashion it is crucial to tak...
The behavior of titanium implants in physiological environments is governed by the thin oxide layer ...
We carry out first principles computations to understand mechanisms of oxygen accommodation on titan...
We perform first-principles calculations to investigate the initial stages of titanium nanoparticle ...
In this work, advanced first-principles molecular dynamics (FPMD) based on density-functional theory...
Oxidized titanium surfaces resulting from various processes have been structurally characterized by ...
We have constructed the surface phase diagrams for oxygen adsorption on γ-TiAl low-index surfaces us...
In this dissertation, I present four projects on the fundamental study of the surface configurations...
Point defects in metal oxides such as TiO2 are key to their applications in numerous technologies. T...
The rutile TiO{sub 2} (110) (1x1) surface is considered the prototypical ''well-defined'' system in ...
In this work, advanced first-principles molecular dynamics (FPMD) based on density-functional theory...
Highly reduced surface reconstructions of BaTiO<sub>3</sub> (001) have been found to be composed of ...
The well-known corrosion resistance and biocompatibility of TiN depend on the structural and chemica...
Oxides enter our everyday life and exhibit an impressive variety of physical and chemical properties...
Diffusion of Ti through the TiO2 (110) rutile surface plays a key role in the growth and reactivity ...