Oxidation of metals can be influenced by the presence of electric field, lattice strain, rearrangement of the oxide structure, and formation of cracks in an oxide. The understanding of the interplay of these factors is still incomplete. We focus on the scenario including the oxide-grain growth. The model used implies that the whole process is limited by diffusion of metal or oxygen atoms along the grain boundaries as it was originally proposed by Fehlner and Mott for macroscopic samples. For nanoparticles, the model predicts a transition from the power-law oxide growth at low conversion to slower growth at high conversion
Metal nanoparticles usually show different oxidation dynamics from bulk metals, which results in var...
Grain boundaries in oxide scales have a strong effect on oxidation kinetics when they act as diffusi...
An der Oberfläche nahezu aller Metalle und Halbleiter erfolgt Oxidbildung, sobald sie der...
Oxidation of metals can be influenced by the presence of electric field, lattice strain, rearrangeme...
The generic 2D lattice Monte Carlo simulations presented herein are focused on the spatio-temporal k...
The growth of one-dimensional oxide nanostructures by direct oxidation of metals has received extens...
Oxidation of iron surfaces and oxide growth mechanisms have been studied using reactive molecular dy...
The redox behaviors of nanoscale metal and ceramic materials are affected by various parameters and ...
The conventional Cabrera-Mott model for the formation of a thin (nm-sized) flat oxide film on the su...
International audienceThe metals oxidation kinetics controlled by the diffusion of charged species (...
Geometry and confinement effects at the nanoscale can result in substantial modifications to a mater...
Formation of one-dimensional metal oxide nanowires formation. Some are based on evaporation and cond...
International audienceDiffusion through oxide scale is very often the limiting step in high temperat...
The oxidation of transition metal surfaces is a process that takes place readily at ambient conditio...
The Cabrera-Mott model, implying that oxidation of a metal is limited by the field-facilitated activ...
Metal nanoparticles usually show different oxidation dynamics from bulk metals, which results in var...
Grain boundaries in oxide scales have a strong effect on oxidation kinetics when they act as diffusi...
An der Oberfläche nahezu aller Metalle und Halbleiter erfolgt Oxidbildung, sobald sie der...
Oxidation of metals can be influenced by the presence of electric field, lattice strain, rearrangeme...
The generic 2D lattice Monte Carlo simulations presented herein are focused on the spatio-temporal k...
The growth of one-dimensional oxide nanostructures by direct oxidation of metals has received extens...
Oxidation of iron surfaces and oxide growth mechanisms have been studied using reactive molecular dy...
The redox behaviors of nanoscale metal and ceramic materials are affected by various parameters and ...
The conventional Cabrera-Mott model for the formation of a thin (nm-sized) flat oxide film on the su...
International audienceThe metals oxidation kinetics controlled by the diffusion of charged species (...
Geometry and confinement effects at the nanoscale can result in substantial modifications to a mater...
Formation of one-dimensional metal oxide nanowires formation. Some are based on evaporation and cond...
International audienceDiffusion through oxide scale is very often the limiting step in high temperat...
The oxidation of transition metal surfaces is a process that takes place readily at ambient conditio...
The Cabrera-Mott model, implying that oxidation of a metal is limited by the field-facilitated activ...
Metal nanoparticles usually show different oxidation dynamics from bulk metals, which results in var...
Grain boundaries in oxide scales have a strong effect on oxidation kinetics when they act as diffusi...
An der Oberfläche nahezu aller Metalle und Halbleiter erfolgt Oxidbildung, sobald sie der...