The conventional Cabrera-Mott model for the formation of a thin (nm-sized) flat oxide film on the surface of a macroscopic metal crystal implies that the process is limited by the field-facilitated activated jumps of metal ions at the metal-oxide interface. Earlier, it was modified in order to describe oxidation of metal nanoparticles with the formation of the oxide shell around the close-packed metallic core. In reality, oxidation of metal nano particles is often accompanied by the appearance of a hollow in the metallic core (Kirkendall effect). Herein, the analytical treatment takes this effect into account. The numerical results obtained by integration of the corresponding equation show the specifics of the oxidation kinetics in this cas...
To understand how the CO oxidation reaction proceeds on nanoparticles, which have complex surface st...
Aluminum-oxygen reaction is important in highly energetic and high pressure generating systems. Nano...
Metal nanoparticles usually show different oxidation dynamics from bulk metals, which results in var...
Auge A, Weddemann A, Vogel B, Wittbracht F, Hütten A. A level set based approach for modeling oxidat...
The Cabrera-Mott model, implying that oxidation of a metal is limited by the field-facilitated activ...
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...
Despite 27 years of experimental and theoretical studies, the mechanism and kinetics of CO oxidation...
The corrosion of silver upon exposure to atomic oxygen is a unique effect reported in the 1980s and ...
A mathematical model which describes the process when a spherical metallic particle is exposed to an...
The Ostwald ripening theory is commonly adopted to rationalize the growth of large metal nanoparticl...
Understanding the oxidation mechanism of metal nanoparticles under ambient pressure is extremely imp...
The dynamics of oxidation of cobalt nanoparticles were directly revealed by in situ environmental tr...
The formation of hollow-structured oxide nanoparticles is primarily governed by the Kirkendall effec...
To understand how the CO oxidation reaction proceeds on nanoparticles, which have complex surface st...
Aluminum-oxygen reaction is important in highly energetic and high pressure generating systems. Nano...
Metal nanoparticles usually show different oxidation dynamics from bulk metals, which results in var...
Auge A, Weddemann A, Vogel B, Wittbracht F, Hütten A. A level set based approach for modeling oxidat...
The Cabrera-Mott model, implying that oxidation of a metal is limited by the field-facilitated activ...
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...
Despite 27 years of experimental and theoretical studies, the mechanism and kinetics of CO oxidation...
The corrosion of silver upon exposure to atomic oxygen is a unique effect reported in the 1980s and ...
A mathematical model which describes the process when a spherical metallic particle is exposed to an...
The Ostwald ripening theory is commonly adopted to rationalize the growth of large metal nanoparticl...
Understanding the oxidation mechanism of metal nanoparticles under ambient pressure is extremely imp...
The dynamics of oxidation of cobalt nanoparticles were directly revealed by in situ environmental tr...
The formation of hollow-structured oxide nanoparticles is primarily governed by the Kirkendall effec...
To understand how the CO oxidation reaction proceeds on nanoparticles, which have complex surface st...
Aluminum-oxygen reaction is important in highly energetic and high pressure generating systems. Nano...
Metal nanoparticles usually show different oxidation dynamics from bulk metals, which results in var...