The microstructural evolution of Cu(In,Ga)Se₂ absorber layers during a three-stage-type co-evaporation process was studied to elucidate the effect of a Cu-rich stage on the formation of extended structural defects. Defect densities for two Cu-poor samples, one interrupted before and one after this crucial Cu-rich composition stage, were investigated by scanning transmission electron microscopy (STEM) imaging. The structure and chemical nature of individual defects were investigated by aberration-corrected high-resolution STEM in combination with electron energy-loss spectroscopy on the atomic-scale. In spite of the different defect densities between the two samples, most of the individual defects exhibited similar chemistry. In particular, ...
High efficiency Cu In,Ga Se2 CIGS thin film solar cells are based on poly crystalline CIGS absorbe...
Structural defects such as voids and compositional inhomogeneities may affect the performance of Cu(...
The interaction of point defects with extrinsic Frank loops in the photovoltaic absorber material Cu...
The microstructural evolution of Cu(In,Ga)Se₂ absorber layers during a three-stage-type co-evaporati...
The microstructural evolution of Cu In,Ga Se2 absorber layers during a three stage type coevaporatio...
Polycrystalline Cu(In,Ga)Se2 (CIGS) based thin-film solar cells achieve power-conversion efficiencie...
Cu In,Ga Se2 CIGS based solar cells reach high power conversion efficiencies of above 22 . In this ...
The interaction of point defects with extrinsic Frank loops in the photovoltaic absorber material Cu...
Structural defects such as voids and compositional inhomogeneities may affect the performance of Cu(...
In polycrystalline semiconductor absorbers for thin film solar cells, structural defects may enhance...
Significant structural evolution occurs during the deposition of CuInSe2 solar materials when the Cu...
High efficiency Cu In,Ga Se2 CIGS thin film solar cells are based on poly crystalline CIGS absorbe...
Structural defects such as voids and compositional inhomogeneities may affect the performance of Cu(...
The interaction of point defects with extrinsic Frank loops in the photovoltaic absorber material Cu...
The microstructural evolution of Cu(In,Ga)Se₂ absorber layers during a three-stage-type co-evaporati...
The microstructural evolution of Cu In,Ga Se2 absorber layers during a three stage type coevaporatio...
Polycrystalline Cu(In,Ga)Se2 (CIGS) based thin-film solar cells achieve power-conversion efficiencie...
Cu In,Ga Se2 CIGS based solar cells reach high power conversion efficiencies of above 22 . In this ...
The interaction of point defects with extrinsic Frank loops in the photovoltaic absorber material Cu...
Structural defects such as voids and compositional inhomogeneities may affect the performance of Cu(...
In polycrystalline semiconductor absorbers for thin film solar cells, structural defects may enhance...
Significant structural evolution occurs during the deposition of CuInSe2 solar materials when the Cu...
High efficiency Cu In,Ga Se2 CIGS thin film solar cells are based on poly crystalline CIGS absorbe...
Structural defects such as voids and compositional inhomogeneities may affect the performance of Cu(...
The interaction of point defects with extrinsic Frank loops in the photovoltaic absorber material Cu...