In this work, advanced first-principles molecular dynamics (FPMD) based on density-functional theory are employed to investigate the early oxidation stages of the TiN(110), Co(0001), Cr(110) and CoCr(0001) surfaces. For TiN, I 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 I compute the segregation energies of vacancies and vacancy clusters at the metal/oxide interface, comparing the stability of the system obtained by FPMD simulations with ideally reconstructed models. Oxide nucleation on cobalt initially follows a metastable, kinetically driven path that results from the high heat release...
Density functional theory (DFT) and tight-binding quantum chemical molecular dynamics (QCMD) have be...
Point defects are an inherent part of crystalline materials and they influence important physical an...
Metal alloying is commonly used as a design strategy for catalyst optimization. The mechanistic unde...
In this work, advanced first-principles molecular dynamics (FPMD) based on density-functional theory...
Despite the fundamental importance of metal surface oxidation in a number of emerging fields such as...
CoCr alloy surfaces are known to oxidize with the formation of stable Cr<sub>2</sub>O<sub>3</sub> pr...
CoCr alloy surfaces are known to oxidize with the formation of stable Cr2O3 protecting films. Howeve...
The well-known corrosion resistance and biocompatibility of TiN depend on the structural and chemica...
The formation of ultrathin oxide layers on metal surfaces is a non-thermally-activated process which...
The formation of a native oxide layer on the Ti(0001) surface is studied by means of FPMD simulation...
The catalytic oxidation activity of platinum particles in automobile catalysts is thought to origina...
The Cr2O3(0001) surface is assumed to terminate by chromium atoms, chromyl groups, and oxygen atoms....
The possible formation of oxides or thin oxide films (surface oxides) on late transition-metal surfa...
Oxidation phenomena on the surface of cobalt-based alloys are of large technological relevance and d...
Structure evolution of Pt-3d transition metal alloys under reductive and oxidizing conditions and ef...
Density functional theory (DFT) and tight-binding quantum chemical molecular dynamics (QCMD) have be...
Point defects are an inherent part of crystalline materials and they influence important physical an...
Metal alloying is commonly used as a design strategy for catalyst optimization. The mechanistic unde...
In this work, advanced first-principles molecular dynamics (FPMD) based on density-functional theory...
Despite the fundamental importance of metal surface oxidation in a number of emerging fields such as...
CoCr alloy surfaces are known to oxidize with the formation of stable Cr<sub>2</sub>O<sub>3</sub> pr...
CoCr alloy surfaces are known to oxidize with the formation of stable Cr2O3 protecting films. Howeve...
The well-known corrosion resistance and biocompatibility of TiN depend on the structural and chemica...
The formation of ultrathin oxide layers on metal surfaces is a non-thermally-activated process which...
The formation of a native oxide layer on the Ti(0001) surface is studied by means of FPMD simulation...
The catalytic oxidation activity of platinum particles in automobile catalysts is thought to origina...
The Cr2O3(0001) surface is assumed to terminate by chromium atoms, chromyl groups, and oxygen atoms....
The possible formation of oxides or thin oxide films (surface oxides) on late transition-metal surfa...
Oxidation phenomena on the surface of cobalt-based alloys are of large technological relevance and d...
Structure evolution of Pt-3d transition metal alloys under reductive and oxidizing conditions and ef...
Density functional theory (DFT) and tight-binding quantum chemical molecular dynamics (QCMD) have be...
Point defects are an inherent part of crystalline materials and they influence important physical an...
Metal alloying is commonly used as a design strategy for catalyst optimization. The mechanistic unde...