Voids in face-centered cubic (fcc) metals are commonly assumed to form via the aggregation of vacancies; however, the mechanisms of vacancy clustering and diffusion are not fully understood. In this study, we use computational modeling to provide a detailed insight into the structures and formation energies of primary vacancy clusters, mechanisms and barriers for their migration in bulk copper, and how these properties are affected at simple grain boundaries. The calculations were carried out using embedded atom method (EAM) potentials and density functional theory (DFT) and employed the site-occupation disorder code (SOD), the activation relaxation technique nouveau (ARTn) and the knowledge led master code (KLMC). We investigate stable str...
We present a comprehensive density functional theory (DFT) -based study of different aspects of one ...
Understanding of the defect evolution mechanism under irradiation is very important for the research...
Understanding surface diffusion is essential in understanding surface phenomena, such as crystal gro...
Voids in face-centered cubic (fcc) metals are commonly assumed to form via the aggregation of vacanc...
Diffusion along twist grain boundaries was studied using the Embedded Atom Method (EAM). Six (100) t...
Studies are described of vacancy clusters, twin boundary structures and vacancy migration at twin bo...
<p><br> This work demonstrates how databases of diffusion-related properties can be developed from h...
peer-reviewedCopper has a history of use that is at least 10,000 years old and it is still one of th...
International audienceThis paper discusses the effect of stress on the solubility and diffusivity of...
Molecular dynamics (MD) and density functional theory (DFT) studies were performed to investigate th...
Copyright © 2020 American Chemical Society. Vacancy diffusion is fundamental to materials science. H...
International audienceBased on a systematic first-principles study, the lowest-energy migration mech...
This article is a study of the solubility of interstitial atoms in aluminum using a multi-scale appr...
Accurate prediction of vacancy migration energy barriers, $\Delta E_a$, in multi-component alloys is...
Molecular dynamics (MD) and density functional theory (DFT) studies were performed to investigate th...
We present a comprehensive density functional theory (DFT) -based study of different aspects of one ...
Understanding of the defect evolution mechanism under irradiation is very important for the research...
Understanding surface diffusion is essential in understanding surface phenomena, such as crystal gro...
Voids in face-centered cubic (fcc) metals are commonly assumed to form via the aggregation of vacanc...
Diffusion along twist grain boundaries was studied using the Embedded Atom Method (EAM). Six (100) t...
Studies are described of vacancy clusters, twin boundary structures and vacancy migration at twin bo...
<p><br> This work demonstrates how databases of diffusion-related properties can be developed from h...
peer-reviewedCopper has a history of use that is at least 10,000 years old and it is still one of th...
International audienceThis paper discusses the effect of stress on the solubility and diffusivity of...
Molecular dynamics (MD) and density functional theory (DFT) studies were performed to investigate th...
Copyright © 2020 American Chemical Society. Vacancy diffusion is fundamental to materials science. H...
International audienceBased on a systematic first-principles study, the lowest-energy migration mech...
This article is a study of the solubility of interstitial atoms in aluminum using a multi-scale appr...
Accurate prediction of vacancy migration energy barriers, $\Delta E_a$, in multi-component alloys is...
Molecular dynamics (MD) and density functional theory (DFT) studies were performed to investigate th...
We present a comprehensive density functional theory (DFT) -based study of different aspects of one ...
Understanding of the defect evolution mechanism under irradiation is very important for the research...
Understanding surface diffusion is essential in understanding surface phenomena, such as crystal gro...