Abstract Recently, MAX phases have attained considerable technological interest owing to their two inherent properties metallic and ceramic properties. This study extensively examined Nb2ScAC2 MAX phases using DFT, to assess the structural, mechanical, electronic, and Thermal characteristics. Firstly, the stability of these two compounds was confirmed through the formation energy, elastic constants (Cij), and phonon band structure, which confirmed their thermodynamic, mechanical, and dynamical stability. The optimized lattice parameters of these compounds were examined and then utilized to calculate the physical properties of the Nb2ScAC2 compound. Our compounds are brittle due to their Pugh’s ratio of less than 1.75. The covalent bonding o...
The structural, mechanical and lattice dynamical properties of the MAX Phase borides compounds Cr2AB...
There is a clear need for high-strength (≥ 300 MPa), thermally stable, conductive materials that are...
WOS: 000437497300003The structural, electronic, mechanic, vibrational and thermodynamic properties o...
The MAX phases are nanolayered transition metal carbides and nitrides characterized by a unique comb...
This thesis presents a theoretical study of bulk materials using ab initio methods based on the dens...
Niobium based Nb4AlC3, Nb4SiC3, Nb4GeC3 and Nb4GaC3 were investigated by means of density functional...
We have studied the physical properties of M2InC (M = Zr, Hf and Ta) MAX phases ternary carbides usi...
The structural, electronic, dynamic, and thermo-elastic properties of M2AlB (X = V, Nb, Ta) MAX phas...
The hypothetical Sc2AlB0.5C0.5, Sc2AlB0.5N0.5 and Sc2AlC0.5N0.5 compounds are M(2)AX type MAX phases...
A new Nb-silicide, -Nb11Si4, identified as a second phase precipitated from a Nb-Si solid solution, ...
Using density functional theory, the phase stability and physical properties, including structural, ...
WOS: 000415771700014The structural, electronic, anisotropic elastic, and lattice dynamical propertie...
WOS: 000454921400004The structural, mechanical, and phonon properties of NbRuB, TaRuB, and NbOsB com...
The MAX phase family is a set of nanolaminated, hexagonal materials typically comprised of three ele...
Since the advent of theoretical materials science some 60 years ago, there has been a drive to predi...
The structural, mechanical and lattice dynamical properties of the MAX Phase borides compounds Cr2AB...
There is a clear need for high-strength (≥ 300 MPa), thermally stable, conductive materials that are...
WOS: 000437497300003The structural, electronic, mechanic, vibrational and thermodynamic properties o...
The MAX phases are nanolayered transition metal carbides and nitrides characterized by a unique comb...
This thesis presents a theoretical study of bulk materials using ab initio methods based on the dens...
Niobium based Nb4AlC3, Nb4SiC3, Nb4GeC3 and Nb4GaC3 were investigated by means of density functional...
We have studied the physical properties of M2InC (M = Zr, Hf and Ta) MAX phases ternary carbides usi...
The structural, electronic, dynamic, and thermo-elastic properties of M2AlB (X = V, Nb, Ta) MAX phas...
The hypothetical Sc2AlB0.5C0.5, Sc2AlB0.5N0.5 and Sc2AlC0.5N0.5 compounds are M(2)AX type MAX phases...
A new Nb-silicide, -Nb11Si4, identified as a second phase precipitated from a Nb-Si solid solution, ...
Using density functional theory, the phase stability and physical properties, including structural, ...
WOS: 000415771700014The structural, electronic, anisotropic elastic, and lattice dynamical propertie...
WOS: 000454921400004The structural, mechanical, and phonon properties of NbRuB, TaRuB, and NbOsB com...
The MAX phase family is a set of nanolaminated, hexagonal materials typically comprised of three ele...
Since the advent of theoretical materials science some 60 years ago, there has been a drive to predi...
The structural, mechanical and lattice dynamical properties of the MAX Phase borides compounds Cr2AB...
There is a clear need for high-strength (≥ 300 MPa), thermally stable, conductive materials that are...
WOS: 000437497300003The structural, electronic, mechanic, vibrational and thermodynamic properties o...