International audienceThe reason why so-called wide-bandgap CuIn1?xGaxSe2 (CIGSe with x\textgreater0.4) based solar cells show hindered performance compared with theoretical expectations is still a matter of debate. In the present Letter, atom probe tomography studies of CuIn1?xGaxSe2 polycrystalline thin films with x varying from 0 to 1 are reported. These investigations confirm that the grain boundaries (GBs) of low gallium containing (x\textless0.4) CIGSe layers are Cu-depleted compared with grains inte- rior (GI). In contrast, it is observed that the GBs of widest band gap CIGSe films (x\textgreater0.8) are Cu- enriched compared with GI. For intermediate gallium contents (0.4\textlessx\textless0.8), both types of GBs are detected. This ...
Cu(In,Ga) Se₂ (CIGS) thin film solar cells have demonstrated very high efficiencies, but still the r...
The lack of an efficiency increase with increasing Ga content in Cu(In,Ga)Se2 solar cells has attrac...
Cost efficiency and defect passivation are the two major challenges that thin-film solar cells have ...
International audienceThe reason why so-called wide-bandgap CuIn1?xGaxSe2 (CIGSe with x\textgreater0...
With efficiency more than 21%, polycrystalline Cu(In,Ga)Se2 (CIGSe) semiconductors present maximum e...
LGEP 2011 ID = 755International audienceThe electric properties of solarcells based on co-evaporated...
We present a study on the electronic properties of grain boundaries (GBs) in polycrystalline Cu(In,G...
We present a study on the electronic properties of grain boundaries (GBs) in polycrystalline Cu(In,G...
The unusual optoelectronic properties of chalcopyrite grain boundaries GBs have become the subject...
We present a study on the electronic properties of grain boundaries GBs in polycrystalline Cu In,G...
The lack of an efficiency increase with increasing Ga content in Cu In,Ga Se2 solar cells has attrac...
Two-dimensional numerical device simulations investigate the influence of grain boundaries (GBs) on ...
Thin film solar cells based on Cu In,Ga Se2 absorber layers have reached conversion efficiencies of ...
The extent to which grain boundaries (GBs) in polycrystalline materials may be detrimental, benign, ...
International audienceThe objective of this work is to study the influence of the copper (Cu) conten...
Cu(In,Ga) Se₂ (CIGS) thin film solar cells have demonstrated very high efficiencies, but still the r...
The lack of an efficiency increase with increasing Ga content in Cu(In,Ga)Se2 solar cells has attrac...
Cost efficiency and defect passivation are the two major challenges that thin-film solar cells have ...
International audienceThe reason why so-called wide-bandgap CuIn1?xGaxSe2 (CIGSe with x\textgreater0...
With efficiency more than 21%, polycrystalline Cu(In,Ga)Se2 (CIGSe) semiconductors present maximum e...
LGEP 2011 ID = 755International audienceThe electric properties of solarcells based on co-evaporated...
We present a study on the electronic properties of grain boundaries (GBs) in polycrystalline Cu(In,G...
We present a study on the electronic properties of grain boundaries (GBs) in polycrystalline Cu(In,G...
The unusual optoelectronic properties of chalcopyrite grain boundaries GBs have become the subject...
We present a study on the electronic properties of grain boundaries GBs in polycrystalline Cu In,G...
The lack of an efficiency increase with increasing Ga content in Cu In,Ga Se2 solar cells has attrac...
Two-dimensional numerical device simulations investigate the influence of grain boundaries (GBs) on ...
Thin film solar cells based on Cu In,Ga Se2 absorber layers have reached conversion efficiencies of ...
The extent to which grain boundaries (GBs) in polycrystalline materials may be detrimental, benign, ...
International audienceThe objective of this work is to study the influence of the copper (Cu) conten...
Cu(In,Ga) Se₂ (CIGS) thin film solar cells have demonstrated very high efficiencies, but still the r...
The lack of an efficiency increase with increasing Ga content in Cu(In,Ga)Se2 solar cells has attrac...
Cost efficiency and defect passivation are the two major challenges that thin-film solar cells have ...