In this work, a series of stain steel 15×15 cm2 CuInS2 solar cells with efficiencies close to the record one for this kind of devices, are analyzed. Through a careful and comprehensive study of the structural and electronic properties of the CuInS2 layer, we show that in a general fashion the strain originated by the thermal annealing affects the energy band splitting and reduces the short circuit current. Then, through an innovative combination of photoreflectance and Raman scattering analysis, we demonstrate that the presence of CuAu domains in the bulk layer of a CuInS2 is directly related with this strain reduction contributing to the improvement of short circuit current. We propose that the presence Cu-Au phase domains reduce the strai...
Abstract The fabrication process for CuInS2 thin film solar modules is described. Being the layer d...
Copper indium disulfide CuInS2 grown under Cu rich conditions exhibits high optical quality but su...
CuInS2 is a good candidate as photovoltaic absorber for the fabrication of high efficient and low co...
In this work, a series of stain steel 15×15 cm2 CuInS2 solar cells with efficiencies close to the re...
The chalcopyrite group of semiconductors is known to represent attractive materials for achieving mo...
[[abstract]]A new photovoltaic material, CuInS2 has been investigated. Mainly due to its direct band...
Abstract Record efficiency in chalcopyrite-based solar cells Cu(In,Ga)(S,Se)2 is achieved using a g...
Record efficiency in chalcopyrite-based solar cells Cu(In,Ga)(S,Se)2 is achieved using a gallium gra...
Cu In,Ga S2 thin films prepared by rapid thermal processing of metallic precursors yielded solar cel...
CuInS2 based solar cells have a strong potential of achieving high ef amp; 64257;ciencies due to the...
Spray deposition of CuInS2 offers an attractive route towards industrial production of thin-film sol...
This paper reports the microstructural analysis of S-rich CuIn(S,Se)2 layers produced by electrodepo...
Cu-poor compositions are key for obtaining high efficiency Cu(In,Ga)Se2 (CIGSe) devices. These condi...
Type transformation in CuInSe2 and CuInS2 solar cells is an important issue with far reaching conseq...
As Si-based solar cell technologies approach their theoretical efficiency limits, alternative photov...
Abstract The fabrication process for CuInS2 thin film solar modules is described. Being the layer d...
Copper indium disulfide CuInS2 grown under Cu rich conditions exhibits high optical quality but su...
CuInS2 is a good candidate as photovoltaic absorber for the fabrication of high efficient and low co...
In this work, a series of stain steel 15×15 cm2 CuInS2 solar cells with efficiencies close to the re...
The chalcopyrite group of semiconductors is known to represent attractive materials for achieving mo...
[[abstract]]A new photovoltaic material, CuInS2 has been investigated. Mainly due to its direct band...
Abstract Record efficiency in chalcopyrite-based solar cells Cu(In,Ga)(S,Se)2 is achieved using a g...
Record efficiency in chalcopyrite-based solar cells Cu(In,Ga)(S,Se)2 is achieved using a gallium gra...
Cu In,Ga S2 thin films prepared by rapid thermal processing of metallic precursors yielded solar cel...
CuInS2 based solar cells have a strong potential of achieving high ef amp; 64257;ciencies due to the...
Spray deposition of CuInS2 offers an attractive route towards industrial production of thin-film sol...
This paper reports the microstructural analysis of S-rich CuIn(S,Se)2 layers produced by electrodepo...
Cu-poor compositions are key for obtaining high efficiency Cu(In,Ga)Se2 (CIGSe) devices. These condi...
Type transformation in CuInSe2 and CuInS2 solar cells is an important issue with far reaching conseq...
As Si-based solar cell technologies approach their theoretical efficiency limits, alternative photov...
Abstract The fabrication process for CuInS2 thin film solar modules is described. Being the layer d...
Copper indium disulfide CuInS2 grown under Cu rich conditions exhibits high optical quality but su...
CuInS2 is a good candidate as photovoltaic absorber for the fabrication of high efficient and low co...