https://doi.org/10.1140/epjb/s10051-020-00024-4
Regular Article - Computational Methods
Cationic and anionic composition-dependent mechanical and thermal properties of zinc-blende specimens under
quaternary system: calculations with density functional FP-LAPW scheme
1
Department of Physics, Tripura University, 799022, Suryamaninagar, Tripura, India
2
Department of Physics, Women’s College, 799001, Agartala, Tripura, India
3
Department of Physics, D.D.M. College, 799202, Khowai, Tripura, India
Received:
24
July
2020
Accepted:
25
November
2020
Published online:
12
January
2021
Elastic and thermal properties of zinc-blende quaternary alloys and their constituent binary/ternary compounds have been computed through first principles calculations. Elastic stiffness constants of specimens have been increased almost linearly with increasing sulfur composition at any fixed magnesium composition, while reverse trends have been observed with increasing magnesium composition at any fixed sulfur composition in each binary–ternary/ternary–quaternary system. Hardness of specimens has been increased almost linearly with increasing sulfur composition at any fixed magnesium composition, while it has been decreased with increasing magnesium composition at any fixed sulfur composition in each system. Mechanical stability, elastic anisotropy, compressibility, ductility and plasticity have been observed in each compound. Mixture of covalent and ionic bonding with prominent role of covalent nature, dominating role of bond bending over stretching and central nature of interatomic forces have been investigated in each compound. Interaction between the atoms in any compound has been observed to be anharmonic in nature via calculated Gruneisen parameter. Computed Debye temperature, Debye frequency, thermal conductivity and melting temperature of all the specimens have also been reported.
© EDP Sciences, SIF and Springer-Verlag GmbH Germany, part of Springer Nature 2021