International audienceUsing the density functional theory and the pseudo-potential approach, the behavior of atomic hydrogen in bulk and surface of B2-FeAl was studied. In Al-rich environment without structural defects, the hydrogen atom prefers to stabilize in octahedral site. However, the most favorable double defect cases were hydrogen with Al-vacancy followed by hydrogen with Al-antisite. For the surface case, the obtained results have shown that H was always attracted by (0 0 1) and (1 1 0) surfaces. The diffusion of H to the bulk was predicted to be favorable for (1 1 0) and unfavorable for (0 0 1) Fe-terminated. The behavior of H in B2-FeAl H was highly dependent on the local environment and the surface orientation
In this study, we calculated the energetics of hydrogen atoms adsorbing on and diffusing into the fi...
We show results of basic energetics and interacting behavior of hydrogen with metal hexaboride surfa...
We investigate the interaction of hydrogen with the B2 TiFe (001)and (110) surfaces using the full-p...
The electronic structure and bonding in a B2 Fe-Al alloy with and without hydrogen as an interstitia...
The electronic structure and bonding in a B2 FeAl alloy with and without hydrogen interaction with a...
A study of H absorption near a Fe vacancy in a B2 FeAl alloy is performed using density functional c...
We have investigated effects of hydrogen atoms on vacancy formation at fcc Fe(111) surfaces. To calc...
The chemisorption of atomic hydrogen on metal surface and into subsurface is of great importance to ...
Hydrogen adsorption on Fe(100) was analyzed using a semiempirical theoretical method. Calculations w...
This study is concerned with the early stages of hydrogen embrittlement on an atomistic scale. We em...
We have investigated trapping effects of monoatomic vacancies Vmono and alloy atoms on hydrogen diff...
Hydrogen storage is one of the challenging components in hydrogen economy towards a cleaner energy. ...
H adsorption on Fe(OH) is investigated by using the density functional theory (DFT) for the H molecu...
With the rising demand for clean energy, the concept of hydrogen economy has grown more popular, and...
We have computed adsorption energies, vibrational frequencies, surface relaxation and buckling for ...
In this study, we calculated the energetics of hydrogen atoms adsorbing on and diffusing into the fi...
We show results of basic energetics and interacting behavior of hydrogen with metal hexaboride surfa...
We investigate the interaction of hydrogen with the B2 TiFe (001)and (110) surfaces using the full-p...
The electronic structure and bonding in a B2 Fe-Al alloy with and without hydrogen as an interstitia...
The electronic structure and bonding in a B2 FeAl alloy with and without hydrogen interaction with a...
A study of H absorption near a Fe vacancy in a B2 FeAl alloy is performed using density functional c...
We have investigated effects of hydrogen atoms on vacancy formation at fcc Fe(111) surfaces. To calc...
The chemisorption of atomic hydrogen on metal surface and into subsurface is of great importance to ...
Hydrogen adsorption on Fe(100) was analyzed using a semiempirical theoretical method. Calculations w...
This study is concerned with the early stages of hydrogen embrittlement on an atomistic scale. We em...
We have investigated trapping effects of monoatomic vacancies Vmono and alloy atoms on hydrogen diff...
Hydrogen storage is one of the challenging components in hydrogen economy towards a cleaner energy. ...
H adsorption on Fe(OH) is investigated by using the density functional theory (DFT) for the H molecu...
With the rising demand for clean energy, the concept of hydrogen economy has grown more popular, and...
We have computed adsorption energies, vibrational frequencies, surface relaxation and buckling for ...
In this study, we calculated the energetics of hydrogen atoms adsorbing on and diffusing into the fi...
We show results of basic energetics and interacting behavior of hydrogen with metal hexaboride surfa...
We investigate the interaction of hydrogen with the B2 TiFe (001)and (110) surfaces using the full-p...