The well-known corrosion resistance and biocompatibility of TiN depend on the structural and chemical properties of the stable oxide film that forms spontaneously on its surface after exposure to air. In the present work, we focus on the atomistic structure and stability of the TiN(100) surface in contact with an oxidizing atmosphere. The early oxidation stages of TiN(100) are investigated by means of first-principles molecular dynamics (FPMD). We observe selective oxidation of Ti atoms and formation of an ultrathin Ti oxide layer, while Ti vacancies are left behind at the metal/oxide interface. Within the formalism of ab initio thermodynamics we compute the segregation energies of vacancies and vacancy clusters at the metal/oxide interface...
This thesis concerns computer simulations, using classical molecular dynamics, of transport processe...
Large-scale classical molecular dynamics simulations of epitaxial TiN/TiN(001) thin film growth at 1...
Titanium nitride (TiN) surfaces can oxidize, and the growth of a TiO<sub><i>x</i></sub> layer on the...
In this work, advanced first-principles molecular dynamics (FPMD) based on density-functional theory...
In this work, advanced first-principles molecular dynamics (FPMD) based on density-functional theory...
The formation of ultrathin oxide layers on metal surfaces is a non-thermally-activated process which...
© 2018 American Chemical Society. Titanium nitride (TiN) surfaces can oxidize, and the growth of a T...
Titanium nitride (TiN) surfaces can oxidize, and the growth of a TiOx layer on the surface along wit...
The adsorption of O-2 on the TiN(001) stepped surface and the consequent formation of surface oxide ...
Transition metal nitrides (TMNs) refractory ceramic materials are widely employed as wear-resistant...
As a first step towards a microscopic understanding of single-Pt atom-dispersed catalysts on non-con...
This work presents a detailed experimental and theoretical study of the oxidation of TiN(001) using ...
The formation of a native oxide layer on the Ti(0001) surface is studied by means of FPMD simulation...
Multiscale modelling, involving thermodynamic assessment and molecular dynamics based on density fun...
Titanium nitride (TiN) is widely used in industry as a protective coating due to its hardness and re...
This thesis concerns computer simulations, using classical molecular dynamics, of transport processe...
Large-scale classical molecular dynamics simulations of epitaxial TiN/TiN(001) thin film growth at 1...
Titanium nitride (TiN) surfaces can oxidize, and the growth of a TiO<sub><i>x</i></sub> layer on the...
In this work, advanced first-principles molecular dynamics (FPMD) based on density-functional theory...
In this work, advanced first-principles molecular dynamics (FPMD) based on density-functional theory...
The formation of ultrathin oxide layers on metal surfaces is a non-thermally-activated process which...
© 2018 American Chemical Society. Titanium nitride (TiN) surfaces can oxidize, and the growth of a T...
Titanium nitride (TiN) surfaces can oxidize, and the growth of a TiOx layer on the surface along wit...
The adsorption of O-2 on the TiN(001) stepped surface and the consequent formation of surface oxide ...
Transition metal nitrides (TMNs) refractory ceramic materials are widely employed as wear-resistant...
As a first step towards a microscopic understanding of single-Pt atom-dispersed catalysts on non-con...
This work presents a detailed experimental and theoretical study of the oxidation of TiN(001) using ...
The formation of a native oxide layer on the Ti(0001) surface is studied by means of FPMD simulation...
Multiscale modelling, involving thermodynamic assessment and molecular dynamics based on density fun...
Titanium nitride (TiN) is widely used in industry as a protective coating due to its hardness and re...
This thesis concerns computer simulations, using classical molecular dynamics, of transport processe...
Large-scale classical molecular dynamics simulations of epitaxial TiN/TiN(001) thin film growth at 1...
Titanium nitride (TiN) surfaces can oxidize, and the growth of a TiO<sub><i>x</i></sub> layer on the...