The diffusivities of substitutional impurity elements in iron have been computed with ab inito electronic density functional techniques, using exchange-correlation functional PW91. Excess entropies and the attempt frequency for a jump were determined by calculating phonon frequencies in the harmonic approximation. The influence of the degree of spontaneous magnetization on diffusivity is taken into account by means of the Girifalco model. The activation energy for diffusion has been determined by computing the vacancy formation energy, impurity-vacancy binding energies, migration barrier energies, and the effective energy associated with correlation of vacancy-mediated jump. For each type of impurity atom these contributions have been evalu...
Diffusivity in defected crystals depends strongly on the interactions among vacancies and interstiti...
International audienceBased on a systematic first-principles study, the lowest-energy migration mech...
An accurate prediction of atomic diffusion in Fe alloys is challenging due to thermal magnetic excit...
The diffusivities of substitutional impurity elements in iron have been computed with ab inito elect...
International audienceThe diffusion properties of a wide range of impurities (transition metals and ...
In the example of oxygen diffusion in dilute ferritic iron alloys it is shown that the calculation o...
The goal of this dissertation is to explore the capability of first-principles modeling of diffusion...
The interaction of interstitial carbon with substitutional silicon and the effect of this interactio...
International audienceBy combining Density Functional Theory, empirical potential and atomic transpo...
In this work Density Functional Theory and the Nudged Elastic Band method are used to calculate ener...
Iron-based ferritic alloys are used for a plethora of industrial applications. These alloys contain ...
The formation of oxide nanoclusters in oxide dispersion strengthened steels is controlled by the dif...
International audienceSubstitutional solutes in metals generally diffuse by successive exchanges wit...
Abstract We characterize the atomic mobility behavior driven by vacancies, in bcc and fcc Fe-Cr dilu...
Diffusivity in defected crystals depends strongly on the interactions among vacancies and interstiti...
International audienceBased on a systematic first-principles study, the lowest-energy migration mech...
An accurate prediction of atomic diffusion in Fe alloys is challenging due to thermal magnetic excit...
The diffusivities of substitutional impurity elements in iron have been computed with ab inito elect...
International audienceThe diffusion properties of a wide range of impurities (transition metals and ...
In the example of oxygen diffusion in dilute ferritic iron alloys it is shown that the calculation o...
The goal of this dissertation is to explore the capability of first-principles modeling of diffusion...
The interaction of interstitial carbon with substitutional silicon and the effect of this interactio...
International audienceBy combining Density Functional Theory, empirical potential and atomic transpo...
In this work Density Functional Theory and the Nudged Elastic Band method are used to calculate ener...
Iron-based ferritic alloys are used for a plethora of industrial applications. These alloys contain ...
The formation of oxide nanoclusters in oxide dispersion strengthened steels is controlled by the dif...
International audienceSubstitutional solutes in metals generally diffuse by successive exchanges wit...
Abstract We characterize the atomic mobility behavior driven by vacancies, in bcc and fcc Fe-Cr dilu...
Diffusivity in defected crystals depends strongly on the interactions among vacancies and interstiti...
International audienceBased on a systematic first-principles study, the lowest-energy migration mech...
An accurate prediction of atomic diffusion in Fe alloys is challenging due to thermal magnetic excit...