In the present work, we report a combined experiment and theoretical study on high pressure structural stability of Al2Cu type- Mo2B up to ∼40 GPa. Experiments using rotating anode x-ray source indicate that the ground state tetragonal structure of Mo2B (space group I4/mcm) to be stable up to the highest pressure studied. In addition, the experimental results were complemented by first principles density functional calculations within the projector augmented wave method. The calculated structural parameters are in excellent agreement with present experiments as well as previous reports. The estimated bulk modulus using Birch-Murnaghan equation of state from both experiment (302 GPa) and theory (310 GPa) reveals the ultra-incompressible natu...
International audienceMoAlB is the first and, so far, the only transition-metal boride that forms al...
Molybdenum disulfide (MoS2) is a promising layer-structured material for use in many applications du...
Molybdenum disulfide (MoS2) is a promising layer-structured material for use in many applications du...
First-principles calculations are performed to investigate the structural, elastic, and electronic p...
Using newly developed particle swarm optimization algorithm on crystal structural prediction, we fir...
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...
The structural and electronic density of states, magnetic, and elastic properties of Mo2FeB2 under h...
Much effort was devoted towards the rational design of ultrastrong transition metal borides (TMBs) w...
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 ...
International audienceMolybdenum dinitride (MoN2) was recently synthesized at a moderate pressure of...
International audienceMolybdenum dinitride (MoN2) was recently synthesized at a moderate pressure of...
MoAlB is the first and, so far, the only transition-metal boride that forms alumina when heated in a...
On the basis of the first-principles techniques, we perform the structure prediction for MoB<sub>2</...
International audienceMoAlB is the first and, so far, the only transition-metal boride that forms al...
Molybdenum disulfide (MoS2) is a promising layer-structured material for use in many applications du...
Molybdenum disulfide (MoS2) is a promising layer-structured material for use in many applications du...
First-principles calculations are performed to investigate the structural, elastic, and electronic p...
Using newly developed particle swarm optimization algorithm on crystal structural prediction, we fir...
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...
The structural and electronic density of states, magnetic, and elastic properties of Mo2FeB2 under h...
Much effort was devoted towards the rational design of ultrastrong transition metal borides (TMBs) w...
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 ...
International audienceMolybdenum dinitride (MoN2) was recently synthesized at a moderate pressure of...
International audienceMolybdenum dinitride (MoN2) was recently synthesized at a moderate pressure of...
MoAlB is the first and, so far, the only transition-metal boride that forms alumina when heated in a...
On the basis of the first-principles techniques, we perform the structure prediction for MoB<sub>2</...
International audienceMoAlB is the first and, so far, the only transition-metal boride that forms al...
Molybdenum disulfide (MoS2) is a promising layer-structured material for use in many applications du...
Molybdenum disulfide (MoS2) is a promising layer-structured material for use in many applications du...