The structural and electronic density of states, magnetic, and elastic properties of Mo2FeB2 under high pressure have been investigated with first principles calculations. Furthermore, the thermal dynamic properties of Mo2FeB2 were also studied with the quasiharmonic Debye model. The volume of Mo2FeB2 decreases with the increasing pressure. Using the analysis of the density of the states, atom population and Mulliken overlap population, it is observed that as the pressure increases, the B-B bonds are strengthened, and the B-Mo covalency decreases. Moreover, for all pressures, Mo2FeB2 is detected in the antiferromagnetic phase and the magnetic moments decrease with the increasing pressure. The calculated bulk modulus, shear modulus, Young's ...
WOS: 000296214300010In this work, density functional theory calculations on the structural, mechanic...
Molybdenum disulfide (MoS2) is a promising layer-structured material for use in many applications du...
We have determined the lattice dynamics of molybdenum at high pressure to 37 GPa using high-resoluti...
The structural and electronic density of states, magnetic, and elastic properties of Mo2FeB2 under h...
The structural and electronic density of states, magnetic, and elastic properties of Mo2FeB2 under h...
First-principles calculations are performed to investigate the structural, elastic, and electronic p...
In the present work, we report a combined experiment and theoretical study on high pressure structur...
Using newly developed particle swarm optimization algorithm on crystal structural prediction, we fir...
The structural phase transitions in molybdenum under pressures are investigated on the basis of firs...
We present results from first-principles calculations on molybdenum polyhydrides under pressure. In ...
The present thesis is concerned to the application of first-principles self-consistent total-energy ...
The structural parameters, elastic constants and electronic structure of NbB2 under pressure are inv...
The structural parameters, elastic constants and electronic structure of NbB2 under pressure are inv...
The structural parameters, elastic constants and electronic structure of NbB2 under pressure are inv...
On the basis of the first-principles techniques, we perform the structure prediction for MoB<sub>2</...
WOS: 000296214300010In this work, density functional theory calculations on the structural, mechanic...
Molybdenum disulfide (MoS2) is a promising layer-structured material for use in many applications du...
We have determined the lattice dynamics of molybdenum at high pressure to 37 GPa using high-resoluti...
The structural and electronic density of states, magnetic, and elastic properties of Mo2FeB2 under h...
The structural and electronic density of states, magnetic, and elastic properties of Mo2FeB2 under h...
First-principles calculations are performed to investigate the structural, elastic, and electronic p...
In the present work, we report a combined experiment and theoretical study on high pressure structur...
Using newly developed particle swarm optimization algorithm on crystal structural prediction, we fir...
The structural phase transitions in molybdenum under pressures are investigated on the basis of firs...
We present results from first-principles calculations on molybdenum polyhydrides under pressure. In ...
The present thesis is concerned to the application of first-principles self-consistent total-energy ...
The structural parameters, elastic constants and electronic structure of NbB2 under pressure are inv...
The structural parameters, elastic constants and electronic structure of NbB2 under pressure are inv...
The structural parameters, elastic constants and electronic structure of NbB2 under pressure are inv...
On the basis of the first-principles techniques, we perform the structure prediction for MoB<sub>2</...
WOS: 000296214300010In this work, density functional theory calculations on the structural, mechanic...
Molybdenum disulfide (MoS2) is a promising layer-structured material for use in many applications du...
We have determined the lattice dynamics of molybdenum at high pressure to 37 GPa using high-resoluti...