Band alignment is key to enhance the performance of heterojunction for chalcopyrite thin film solar cells. In this paper we report ab initio calculations of the electronic structures of CuGaS2:Cr with various Cr compositions, CuAlSe2 and ZnSe and the band alignment between their interfaces. We use density functional theory and the more accurate self-consistent GW scheme to obtain improved bulk band-gaps and band offsets. Band alignments of the interfacial region for CuGaS2:Cr/CuAlSe2 and CuGaS2:Cr/ZnSe systems were aligned with respect of an average electrostatic potential. Our results are in good agreement with experimental values for the bulk band-gaps. These theoretical band alignments show a characteristic staggered band alignment for t...
CuGaS2 is the most promising chalcopyrite host for intermediate-band thin-film solar cells. Standard...
Quaternary chalcopyrites have shown to exhibit tunable band gaps with changing anion composition. In...
Quaternary chalcopyrites have shown to exhibit tunable band gaps with changing anion composition. In...
Band alignment is key to enhance the performance of heterojunction for chalcopyrite thin film solar ...
Cu-chalcopyrite semiconductors are commonly used as light absorbing materials on solar cell devices....
Energy band alignment plays an important role in thin film solar cells. This article presents an ove...
Energy band alignment plays an important role in thin film solar cells. This article presents an ove...
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...
Density Functional Theory (DFT) calculations at the GGA level have been carried out for Ti‐substitut...
Cu(In1−xGax)Se2 (CIGS) alloy based thin film photovoltaic solar cells have attracted more and more a...
In this work we present Density Functional Theory calculations (at the standard theory level and be...
The electronic structure of modified CuGaS2, which belongs to the family of Cu-containing chalcopyri...
Quaternary chalcopyrites have shown to exhibit tunable band gaps with changing anion composition. In...
CuGaS2 is the most promising chalcopyrite host for intermediate-band thin-film solar cells. Standard...
CuGaS2 is the most promising chalcopyrite host for intermediate-band thin-film solar cells. Standard...
Quaternary chalcopyrites have shown to exhibit tunable band gaps with changing anion composition. In...
Quaternary chalcopyrites have shown to exhibit tunable band gaps with changing anion composition. In...
Band alignment is key to enhance the performance of heterojunction for chalcopyrite thin film solar ...
Cu-chalcopyrite semiconductors are commonly used as light absorbing materials on solar cell devices....
Energy band alignment plays an important role in thin film solar cells. This article presents an ove...
Energy band alignment plays an important role in thin film solar cells. This article presents an ove...
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...
Density Functional Theory (DFT) calculations at the GGA level have been carried out for Ti‐substitut...
Cu(In1−xGax)Se2 (CIGS) alloy based thin film photovoltaic solar cells have attracted more and more a...
In this work we present Density Functional Theory calculations (at the standard theory level and be...
The electronic structure of modified CuGaS2, which belongs to the family of Cu-containing chalcopyri...
Quaternary chalcopyrites have shown to exhibit tunable band gaps with changing anion composition. In...
CuGaS2 is the most promising chalcopyrite host for intermediate-band thin-film solar cells. Standard...
CuGaS2 is the most promising chalcopyrite host for intermediate-band thin-film solar cells. Standard...
Quaternary chalcopyrites have shown to exhibit tunable band gaps with changing anion composition. In...
Quaternary chalcopyrites have shown to exhibit tunable band gaps with changing anion composition. In...