Copper indium gallium selenide (CIGS) solar cells, known for their high conversion efficiency, are designed with a V-shaped bandgap grading approach. This is accomplished by adjusting the Ga/(Ga + In) (GGI) ratio across the absorber layer. However, several factors can contribute to the lower open-circuit voltage and fill factor of CIGS solar cells, including nonoptimal bandgap grading, incomplete or nonuniform absorber layers, poor crystal quality, bulk defects within the CIGS absorber, and high recombination at the CIGS/Mo interface on the back surface. In this study, we introduced a dual-modification method to alter the GGI profile without changing the Ga/In input and substrate temperature of the existing three-stage process using a pre-G...
LGEP 2011 ID = 755International audienceThe electric properties of solarcells based on co-evaporated...
Thinner CuIn1-xGaxS2 (CIGS2) solar cells are being prepared with an aim to reduce the consumption of...
Efficiencies of CuIn1-xGaxSe2-ySy (CIGSS) modules are comparable to those of lower end crystalline-S...
Nearly all of the world’s energy demand today is being met by the use of non-renewable energy source...
Solution-processed Cu(In,Ga)(S,Se)(2) (CIGS) has a great potential for the production of large-area ...
Copper Indium Gallium DiSelenide absorber layers are fabricated using a two step manufacturing-frien...
Defect control in Cu(In,Ga)Se<sub>2</sub> (CIGS) materials, no matter what the defect type or dens...
Surface modifications of 3-stage co-evaporated Cu(In,Ga)Se2 (CIGS) thin films are investigated by fi...
The benefits of gallium (Ga) grading on Cu(In,Ga)Se2 (CIGS) solar cell performance are demonstrated ...
Reducing the Cu(InxGa1−x)Se2 (CIGS) thickness is an effective way to reduce the material use and inc...
The article presents the development of radiation resistant, highly efficient, high specific power, ...
Reducing the absorber layer thickness below 1 μm for a regular copper indium gallium di-selenide (CI...
Cu(In,Ga)Se2 (CIGS) is a semiconductor material and the basis of the promising thin-film photovoltai...
Highly efficient thin film solar cells based on co-evaporated Cu(In,Ga)Se2 (CIGS) absorbers are typi...
This contribution evaluates the effect of absorber off‐stoichiometry in wide‐gap (Ag,Cu)(In,Ga)Se2 (...
LGEP 2011 ID = 755International audienceThe electric properties of solarcells based on co-evaporated...
Thinner CuIn1-xGaxS2 (CIGS2) solar cells are being prepared with an aim to reduce the consumption of...
Efficiencies of CuIn1-xGaxSe2-ySy (CIGSS) modules are comparable to those of lower end crystalline-S...
Nearly all of the world’s energy demand today is being met by the use of non-renewable energy source...
Solution-processed Cu(In,Ga)(S,Se)(2) (CIGS) has a great potential for the production of large-area ...
Copper Indium Gallium DiSelenide absorber layers are fabricated using a two step manufacturing-frien...
Defect control in Cu(In,Ga)Se<sub>2</sub> (CIGS) materials, no matter what the defect type or dens...
Surface modifications of 3-stage co-evaporated Cu(In,Ga)Se2 (CIGS) thin films are investigated by fi...
The benefits of gallium (Ga) grading on Cu(In,Ga)Se2 (CIGS) solar cell performance are demonstrated ...
Reducing the Cu(InxGa1−x)Se2 (CIGS) thickness is an effective way to reduce the material use and inc...
The article presents the development of radiation resistant, highly efficient, high specific power, ...
Reducing the absorber layer thickness below 1 μm for a regular copper indium gallium di-selenide (CI...
Cu(In,Ga)Se2 (CIGS) is a semiconductor material and the basis of the promising thin-film photovoltai...
Highly efficient thin film solar cells based on co-evaporated Cu(In,Ga)Se2 (CIGS) absorbers are typi...
This contribution evaluates the effect of absorber off‐stoichiometry in wide‐gap (Ag,Cu)(In,Ga)Se2 (...
LGEP 2011 ID = 755International audienceThe electric properties of solarcells based on co-evaporated...
Thinner CuIn1-xGaxS2 (CIGS2) solar cells are being prepared with an aim to reduce the consumption of...
Efficiencies of CuIn1-xGaxSe2-ySy (CIGSS) modules are comparable to those of lower end crystalline-S...