In this study, we have investigated the effect of bi-axial, ?ab, and uni-axial, ?c, strains on the optoelectronic properties of chalcopyrite semiconductor CuGaSe2 through first-principles full potential linearized augmented plane wave method. These materials have recently attracted much interest within the materials science community. The results are obtained in the framework of Density Functional Theory (DFT), using the Generalized Gradient Approximation based on the minimization of total energy, together with the modified Becke-Johnson exchange-correlation potential, as implemented in the WIEN2k code. Our results show that unstrained CuGaSe2 is a direct band gap semiconductor with a energy of 1.16 eV, thus improving the results of some pr...
We report results from first-principles density functional calculations using the full-potential lin...
Cu-chalcopyrite semiconductors are commonly used as light absorbing materials on solar cell devices....
Band alignment is key to enhance the performance of heterojunction for chalcopyrite thin film solar ...
CuGaS2 is the most promising chalcopyrite host for intermediate-band thin-film solar cells. Standard...
Following the chronological stages of calculations imposed by the WIEN2K code, we have performed a s...
CuGaS2 is the most promising chalcopyrite host for intermediate-band thin-film solar cells. Standard...
We present dielectric-function-related optical properties such as absorption coefficient, refractive...
Density Functional Theory (DFT) calculations at the GGA level have been carried out for Ti-substitut...
Density Functional Theory (DFT) calculations at the GGA level have been carried out for Ti-substitut...
Cu(In,Ga)Se2 is one of the most promising material systems for thin film photovoltaics with record e...
Cu(In,Ga)Se2 is one of the most promising material systems for thin film photovoltaics with record e...
AbstractThe structural, elastic, electronic, and optical properties of HgGeB2 (BP, As) are investiga...
Cu(In,Ga)Se2 is one of the most promising material systems for thin film photovoltaics with record e...
The electronic and optical properties of Cu2ZnGeS4 are calculated by means of the full potential lin...
Density Functional Theory (DFT) calculations at the GGA level have been carried out for Ti‐substitut...
We report results from first-principles density functional calculations using the full-potential lin...
Cu-chalcopyrite semiconductors are commonly used as light absorbing materials on solar cell devices....
Band alignment is key to enhance the performance of heterojunction for chalcopyrite thin film solar ...
CuGaS2 is the most promising chalcopyrite host for intermediate-band thin-film solar cells. Standard...
Following the chronological stages of calculations imposed by the WIEN2K code, we have performed a s...
CuGaS2 is the most promising chalcopyrite host for intermediate-band thin-film solar cells. Standard...
We present dielectric-function-related optical properties such as absorption coefficient, refractive...
Density Functional Theory (DFT) calculations at the GGA level have been carried out for Ti-substitut...
Density Functional Theory (DFT) calculations at the GGA level have been carried out for Ti-substitut...
Cu(In,Ga)Se2 is one of the most promising material systems for thin film photovoltaics with record e...
Cu(In,Ga)Se2 is one of the most promising material systems for thin film photovoltaics with record e...
AbstractThe structural, elastic, electronic, and optical properties of HgGeB2 (BP, As) are investiga...
Cu(In,Ga)Se2 is one of the most promising material systems for thin film photovoltaics with record e...
The electronic and optical properties of Cu2ZnGeS4 are calculated by means of the full potential lin...
Density Functional Theory (DFT) calculations at the GGA level have been carried out for Ti‐substitut...
We report results from first-principles density functional calculations using the full-potential lin...
Cu-chalcopyrite semiconductors are commonly used as light absorbing materials on solar cell devices....
Band alignment is key to enhance the performance of heterojunction for chalcopyrite thin film solar ...