The generic 2D lattice Monte Carlo simulations presented herein are focused on the spatio-temporal kinetics of oxidation of metal nanoparticles composed of two grains separated by a single grain boundary. The oxidation is assumed to occur via inward diffusion of interstitial oxygen ions in the oxide. The results of simulations illustrate that the regimes of oxidation can range from one where the presence of grains is negligible and the oxide shell is formed at the periphery of a whole nanoparticle to one where each grain is oxidized almost independently
Multi-scale modeling has been growing rapidly from the descriptive to predictive functions and emplo...
Grain boundaries determine physical properties of bulk materials including ductility, diffusivity, a...
Auge A, Weddemann A, Vogel B, Wittbracht F, Hütten A. A level set based approach for modeling oxidat...
Oxidation of metals can be influenced by the presence of electric field, lattice strain, rearrangeme...
The oxidation of aluminum nanoparticles is studied with classical molecular dynamics and the Streitz...
Metal nanoparticles have many desirable electrical, magnetic, optical, chemi-cal, and physical prope...
Our long-term vision is for a comprehensive and fundamental understanding of a critical gas-surface ...
We performed ReaxFF-molecular dynamics (MD) simulations of the oxidation of aluminum nanoparticles (...
The conventional Cabrera-Mott model for the formation of a thin (nm-sized) flat oxide film on the su...
The urgent requirement of minimising the worldwide cost of corrosion, accompanied by the increasingl...
PhDThis thesis investigates both experimentally and numerically the oxidation, sintering, melting an...
We present a general strategy for generating full atomistic models of nanopolycrystalline materials...
The Cabrera-Mott model, implying that oxidation of a metal is limited by the field-facilitated activ...
The purpose of this dissertation is to investigate the properties and processes in nanostructured ox...
Soot oxidation by supported metal nanoparticles is simulated by using the Monte Carlo technique. The...
Multi-scale modeling has been growing rapidly from the descriptive to predictive functions and emplo...
Grain boundaries determine physical properties of bulk materials including ductility, diffusivity, a...
Auge A, Weddemann A, Vogel B, Wittbracht F, Hütten A. A level set based approach for modeling oxidat...
Oxidation of metals can be influenced by the presence of electric field, lattice strain, rearrangeme...
The oxidation of aluminum nanoparticles is studied with classical molecular dynamics and the Streitz...
Metal nanoparticles have many desirable electrical, magnetic, optical, chemi-cal, and physical prope...
Our long-term vision is for a comprehensive and fundamental understanding of a critical gas-surface ...
We performed ReaxFF-molecular dynamics (MD) simulations of the oxidation of aluminum nanoparticles (...
The conventional Cabrera-Mott model for the formation of a thin (nm-sized) flat oxide film on the su...
The urgent requirement of minimising the worldwide cost of corrosion, accompanied by the increasingl...
PhDThis thesis investigates both experimentally and numerically the oxidation, sintering, melting an...
We present a general strategy for generating full atomistic models of nanopolycrystalline materials...
The Cabrera-Mott model, implying that oxidation of a metal is limited by the field-facilitated activ...
The purpose of this dissertation is to investigate the properties and processes in nanostructured ox...
Soot oxidation by supported metal nanoparticles is simulated by using the Monte Carlo technique. The...
Multi-scale modeling has been growing rapidly from the descriptive to predictive functions and emplo...
Grain boundaries determine physical properties of bulk materials including ductility, diffusivity, a...
Auge A, Weddemann A, Vogel B, Wittbracht F, Hütten A. A level set based approach for modeling oxidat...