Hollow nanoparticles (NPs) are produced by void nucleation and growth during chemical reactions. However, there is no proper understanding of nucleation and growth mechanisms and their predictive modeling. Models based on the Kirkendall effect predict the process time, which is larger by orders of magnitude than in experiment. This is why some works propose that a large tensile pressure in the core causes void nucleation. Here, a continuum-mechanics approach for nucleation and growth of a nanovoid in reacting NPs based on the Kirkendall effect is developed. In contrast to previous approaches, void nucleation and the effects of stresses are treated explicitly. The void nucleation condition vs pressure, temperature, size of a vacancy, core ma...
peer reviewedOstwald ripening is a major source of deactivation of functional nanomaterials. It cons...
MD simulations in monocrystalline and nanocrystalline copper were carried out with LAMMPS to reveal ...
The mechanisms of spalling and melting in nanocrystalline Pb under shock loading are studied by mole...
Hollow nanoparticles (NPs) are produced by void nucleation and growth during chemical reactions. How...
The problem of the mechanisms of void nucleation in nanoparticles and related problem of the stresse...
A numerical model to estimate critical times required for nanovoid nucleation in high-purity aluminu...
We apply the HotQC method of Kulkarni et al. (J Mech Phys Solids 56:1417–1449, 2008) to the study ...
International audienceRapid expansion of a heated target and its decomposition into fragments is inv...
Tensile failure of metals often occurs through void nucleation, growth and coalescence. In high-puri...
Results of kinetic Monte Carlo simulation of the formation of a hollow nanosphere by interdiffusion ...
Defects such as vacancies and nanovoids are known to drastically modify the structural state of mate...
With the help of molecular dynamics simulations the mechanism of nanovoid growth in aluminum under h...
In recent years, significant progress has been made in understanding the void growth and swelling be...
We have investigated the microstructural changes in ductile porous metals during high pressure-high ...
We have investigated the microstructural changes in ductile porous metals during high pressure-high ...
peer reviewedOstwald ripening is a major source of deactivation of functional nanomaterials. It cons...
MD simulations in monocrystalline and nanocrystalline copper were carried out with LAMMPS to reveal ...
The mechanisms of spalling and melting in nanocrystalline Pb under shock loading are studied by mole...
Hollow nanoparticles (NPs) are produced by void nucleation and growth during chemical reactions. How...
The problem of the mechanisms of void nucleation in nanoparticles and related problem of the stresse...
A numerical model to estimate critical times required for nanovoid nucleation in high-purity aluminu...
We apply the HotQC method of Kulkarni et al. (J Mech Phys Solids 56:1417–1449, 2008) to the study ...
International audienceRapid expansion of a heated target and its decomposition into fragments is inv...
Tensile failure of metals often occurs through void nucleation, growth and coalescence. In high-puri...
Results of kinetic Monte Carlo simulation of the formation of a hollow nanosphere by interdiffusion ...
Defects such as vacancies and nanovoids are known to drastically modify the structural state of mate...
With the help of molecular dynamics simulations the mechanism of nanovoid growth in aluminum under h...
In recent years, significant progress has been made in understanding the void growth and swelling be...
We have investigated the microstructural changes in ductile porous metals during high pressure-high ...
We have investigated the microstructural changes in ductile porous metals during high pressure-high ...
peer reviewedOstwald ripening is a major source of deactivation of functional nanomaterials. It cons...
MD simulations in monocrystalline and nanocrystalline copper were carried out with LAMMPS to reveal ...
The mechanisms of spalling and melting in nanocrystalline Pb under shock loading are studied by mole...