A first principles density functional theory (DFT) technique is used to study the structural, chemical bonding, electronic and optical properties of BeAZ2 (A = Si, Ge, Sn; Z = P, As) chalcopyrite materials. The calculated parameters are in good agreement with the available experimental results. The lattice constants and the equilibrium volume increased as we moved from Si to Ge to Sn, whereas the c/a and internal parameters u decreased by shifting the cation from P to As. These compounds are elastically stable. An investigation of the band gap using the WC-GGA, EV-GGA, PBE-GGA and mBJ-metaGGA potentials suggested that BeSiP2 and BeSiAs2 are direct band gap compounds, whereas BeGeP2, BeGeAs2, BeSnP2, BeSnAs2 are indirect band gap compounds. ...
A theoretical study of the structural, electronic and optical properties of a series of group I−III ...
The physical properties of defect chalcopyrite compounds are discussed here. Initial study are carri...
In order to gain an insight into the bonding and to characterize linear and nonlinear optical proper...
A first principles density functional theory (DFT) technique is used to study the structural, chemic...
AbstractThe structural, elastic, electronic, and optical properties of HgGeB2 (BP, As) are investiga...
We have explored the structural, electronic, optical, and mechanical properties of the magnesium-bas...
We report first principles calculations of solid state properties of ZnSiAs2 and ZnGeAs2 chalcopyrit...
The chalcopyrite structure is a rich source for the exploration of new IR materials. However, not al...
The structural, electronic and optical properties of CuBX2 (X = S, Se, Te) chalcopyrite semiconducto...
181-189The structural, electronic and optical properties of GaInAs2 and GaInP2 with chalcopyrite s...
The structural, electronic and optical properties of GaInAs2 and GaInP2 with chalcopyrite structure ...
WOS: 000391126900031We have explored the structural, electronic, optical, and mechanical properties ...
We have performed a first principles study of the structural, elastic and electronic properties of o...
We report results from first-principles density functional calculations using the full-potential lin...
WOS:000662834500004Bi12XO20 (X: Si, Ge, Ti) ternary semiconducting compounds are known as sillenites...
A theoretical study of the structural, electronic and optical properties of a series of group I−III ...
The physical properties of defect chalcopyrite compounds are discussed here. Initial study are carri...
In order to gain an insight into the bonding and to characterize linear and nonlinear optical proper...
A first principles density functional theory (DFT) technique is used to study the structural, chemic...
AbstractThe structural, elastic, electronic, and optical properties of HgGeB2 (BP, As) are investiga...
We have explored the structural, electronic, optical, and mechanical properties of the magnesium-bas...
We report first principles calculations of solid state properties of ZnSiAs2 and ZnGeAs2 chalcopyrit...
The chalcopyrite structure is a rich source for the exploration of new IR materials. However, not al...
The structural, electronic and optical properties of CuBX2 (X = S, Se, Te) chalcopyrite semiconducto...
181-189The structural, electronic and optical properties of GaInAs2 and GaInP2 with chalcopyrite s...
The structural, electronic and optical properties of GaInAs2 and GaInP2 with chalcopyrite structure ...
WOS: 000391126900031We have explored the structural, electronic, optical, and mechanical properties ...
We have performed a first principles study of the structural, elastic and electronic properties of o...
We report results from first-principles density functional calculations using the full-potential lin...
WOS:000662834500004Bi12XO20 (X: Si, Ge, Ti) ternary semiconducting compounds are known as sillenites...
A theoretical study of the structural, electronic and optical properties of a series of group I−III ...
The physical properties of defect chalcopyrite compounds are discussed here. Initial study are carri...
In order to gain an insight into the bonding and to characterize linear and nonlinear optical proper...