In the present work, the behavior of He in the MAX phase Ti3AlC2 material is investigated using first-principle methods. It is found that, according to the predicted formation energies, a single He atom favors residing near the Al plane in Ti3AlC2. The results also show that Al vacancies are better able to trap He atoms than either Ti or C vacancies. The formation energies for the secondary vacancy defects near an Al vacancy or a C vacancy are strongly influenced by He impurity content. According to the present results, the existence of trapped He atoms in primary Al vacancy can promote secondary vacancy formation and the He bubble trapped by Al vacancies has a higher tendency to grow in the Al plane of Ti3AlC2. The diffusion of He in Ti3Al...
In present investigation, Ti3AlC2 ceramic was irradiated at room temperature using 50 keV He ions wi...
In present investigation, Ti3AlC2 ceramic was irradiated at room temperature using 50 keV He ions wi...
We use first-principles calculations to study the energetics of intrinsic defects in Ti2AlC and the ...
In the present work, the behavior of He in the MAX phase Ti3AlC2 material is investigated using firs...
In the present work, the behavior of He in the MAX phase Ti3AlC2 material is investigated using firs...
Ti3AlC2 known as representing material in MAX phases, has been suggested for next generation nuclear...
Understanding helium (He) incorporation into materials is essential to estimate the material perform...
Ti3SiC2 is a potential structural material for nuclear reactor applications. However, He irradiation...
Using the first-principles method based on density functional theory, the effect of helium irradiati...
International audienceFirst-principles calculations have been performed to study hydrogen incorporat...
International audienceFirst-principles calculations have been performed to study hydrogen incorporat...
MAX phase materials have attracted increased attention due to their unique combination of ceramic an...
Using the first-principles method based on density functional theory, the effect of helium irradiati...
The effects of helium (He) irradiation on Ti2AlC at different temperatures were studied in this work...
In present investigation, Ti3AlC2 ceramic was irradiated at room temperature using 50 keV He ions wi...
In present investigation, Ti3AlC2 ceramic was irradiated at room temperature using 50 keV He ions wi...
In present investigation, Ti3AlC2 ceramic was irradiated at room temperature using 50 keV He ions wi...
We use first-principles calculations to study the energetics of intrinsic defects in Ti2AlC and the ...
In the present work, the behavior of He in the MAX phase Ti3AlC2 material is investigated using firs...
In the present work, the behavior of He in the MAX phase Ti3AlC2 material is investigated using firs...
Ti3AlC2 known as representing material in MAX phases, has been suggested for next generation nuclear...
Understanding helium (He) incorporation into materials is essential to estimate the material perform...
Ti3SiC2 is a potential structural material for nuclear reactor applications. However, He irradiation...
Using the first-principles method based on density functional theory, the effect of helium irradiati...
International audienceFirst-principles calculations have been performed to study hydrogen incorporat...
International audienceFirst-principles calculations have been performed to study hydrogen incorporat...
MAX phase materials have attracted increased attention due to their unique combination of ceramic an...
Using the first-principles method based on density functional theory, the effect of helium irradiati...
The effects of helium (He) irradiation on Ti2AlC at different temperatures were studied in this work...
In present investigation, Ti3AlC2 ceramic was irradiated at room temperature using 50 keV He ions wi...
In present investigation, Ti3AlC2 ceramic was irradiated at room temperature using 50 keV He ions wi...
In present investigation, Ti3AlC2 ceramic was irradiated at room temperature using 50 keV He ions wi...
We use first-principles calculations to study the energetics of intrinsic defects in Ti2AlC and the ...