WOS: 000391126900031We have explored the structural, electronic, optical, and mechanical properties of the magnesium-based chalcopyrites MgSiP2, MgSiAs2, and MgSiSb2 using density functional theory with five different generalized gradient approximation (GGA) functionals: Perdew-Wang (1991), Perdew-Burke-Ernzerhof, revised Perdew-Burke-Ernzerhof, modified Perdew-Burke-Ernzerhof for solids, and Armiento-Mattson (2005) as well as the local density approximation. Change of the constituent element from P to Sb significantly affected the lattice constants, elastic constants, and thermal and dielectric properties. Our theoretically computed results are in reasonable agreement with experiments and other theoretical calculations. The electronic band...
A first principles density functional theory (DFT) technique is used to study the structural, chemic...
We report first principles calculations of solid state properties of ZnSiAs2 and ZnGeAs2 chalcopyrit...
Mg2Si-based thermoelectrics are currently the most promising, environmentally benign and inexpensive...
We have explored the structural, electronic, optical, and mechanical properties of the magnesium-bas...
AbstractThe structural, elastic, electronic, and optical properties of HgGeB2 (BP, As) are investiga...
The scope of this work is the investigation of the physical properties of chalcopyrite materials usi...
We have performed a first principles study of structural, mechanical, electronic, and optical proper...
A first principles density functional theory (DFT) technique is used to study the structural, chemic...
We have performed a first principles study of structural, mechanical, electronic, and optical proper...
Mg2Si-based thermoelectrics are currently the most promising, environmentally benign and inexpensive...
Mg2Si-based thermoelectrics are currently the most promising, environmentally benign and inexpensive...
The structural, electronic and optical properties of Sb2S3 have been investigated using full-poten...
A theoretical study of the structural, electronic and optical properties of a series of group I−III ...
AbstractThe structural, elastic, electronic, and optical properties of HgGeB2 (BP, As) are investiga...
This paper presents Density-Functional Perturbation Theory (DFPT) calculations on the electronic, vi...
A first principles density functional theory (DFT) technique is used to study the structural, chemic...
We report first principles calculations of solid state properties of ZnSiAs2 and ZnGeAs2 chalcopyrit...
Mg2Si-based thermoelectrics are currently the most promising, environmentally benign and inexpensive...
We have explored the structural, electronic, optical, and mechanical properties of the magnesium-bas...
AbstractThe structural, elastic, electronic, and optical properties of HgGeB2 (BP, As) are investiga...
The scope of this work is the investigation of the physical properties of chalcopyrite materials usi...
We have performed a first principles study of structural, mechanical, electronic, and optical proper...
A first principles density functional theory (DFT) technique is used to study the structural, chemic...
We have performed a first principles study of structural, mechanical, electronic, and optical proper...
Mg2Si-based thermoelectrics are currently the most promising, environmentally benign and inexpensive...
Mg2Si-based thermoelectrics are currently the most promising, environmentally benign and inexpensive...
The structural, electronic and optical properties of Sb2S3 have been investigated using full-poten...
A theoretical study of the structural, electronic and optical properties of a series of group I−III ...
AbstractThe structural, elastic, electronic, and optical properties of HgGeB2 (BP, As) are investiga...
This paper presents Density-Functional Perturbation Theory (DFPT) calculations on the electronic, vi...
A first principles density functional theory (DFT) technique is used to study the structural, chemic...
We report first principles calculations of solid state properties of ZnSiAs2 and ZnGeAs2 chalcopyrit...
Mg2Si-based thermoelectrics are currently the most promising, environmentally benign and inexpensive...