Cu(In,Ga)Se2 (CIGS) technology is one of the best absorber materials with record efficiencies among photovoltaic thin-film technologies (22.3% at lab scale and 16% at large commercial module). Although research on this material was originally motivated by low-cost, glass-glass applications focusing to fixed photovoltaic structures, the high efficiency values make CIGS an interesting alternative for low concentration systems. In this paper a 2D model for Cu(In,Ga)Se2 (CIGS) solar cells under low solar concentration is described and contrasted with experimental data. Using simulation, the effect of front electric contact design parameters: finger width, finger separation, and number of buses are analyzed for solar concentrations from 1 up to ...
Reducing the Cu(InxGa1−x)Se2 (CIGS) thickness is an effective way to reduce the material use and inc...
The Copper Indium Gallium di-Selenide (CIGS) thin lm solar cells are studied in this research. The i...
One of the main challenges in Cu(InGa)Se-2 (CIGS) solar cells modeling is due to the complex microcr...
Cu(In,Ga)Se2 (CIGS) technology is one of the best absorber materials with record efficiencies among ...
Cu(In,Ga)Se2 (CIGS) is one of the most promising semiconductor compounds for large-scale production ...
We have used a program called analysis of microelectronic and photonic structures-one dimensional (A...
Research and development on sustainable and renewable energy sources such solar energy have been pro...
AbstractThis paper deals with the development of an analytical model for simulating a polycrystallin...
As world energy demands continue to increase, the need to generate electricity from a broader variet...
The physical data of the semiconductor materials used in the design of a CIGS absorber based thin fi...
Photovoltaic solar energy is presently a consolidated market. The annual growth rate of global photo...
With the advent of the 21st century, one of the serious problems facing mankind is harmful effects o...
The quaternary chalcopyrite semiconductor alloy Cu(In,Ga)Se2 (CIGS) is nowadays commonly considered ...
In this thesis, modeling and electrical characterization have been performed on Cu(In,Ga)Se2 (CIGS) ...
This thesis aims to quantitatively identify and study, through numerical simulations, the properties...
Reducing the Cu(InxGa1−x)Se2 (CIGS) thickness is an effective way to reduce the material use and inc...
The Copper Indium Gallium di-Selenide (CIGS) thin lm solar cells are studied in this research. The i...
One of the main challenges in Cu(InGa)Se-2 (CIGS) solar cells modeling is due to the complex microcr...
Cu(In,Ga)Se2 (CIGS) technology is one of the best absorber materials with record efficiencies among ...
Cu(In,Ga)Se2 (CIGS) is one of the most promising semiconductor compounds for large-scale production ...
We have used a program called analysis of microelectronic and photonic structures-one dimensional (A...
Research and development on sustainable and renewable energy sources such solar energy have been pro...
AbstractThis paper deals with the development of an analytical model for simulating a polycrystallin...
As world energy demands continue to increase, the need to generate electricity from a broader variet...
The physical data of the semiconductor materials used in the design of a CIGS absorber based thin fi...
Photovoltaic solar energy is presently a consolidated market. The annual growth rate of global photo...
With the advent of the 21st century, one of the serious problems facing mankind is harmful effects o...
The quaternary chalcopyrite semiconductor alloy Cu(In,Ga)Se2 (CIGS) is nowadays commonly considered ...
In this thesis, modeling and electrical characterization have been performed on Cu(In,Ga)Se2 (CIGS) ...
This thesis aims to quantitatively identify and study, through numerical simulations, the properties...
Reducing the Cu(InxGa1−x)Se2 (CIGS) thickness is an effective way to reduce the material use and inc...
The Copper Indium Gallium di-Selenide (CIGS) thin lm solar cells are studied in this research. The i...
One of the main challenges in Cu(InGa)Se-2 (CIGS) solar cells modeling is due to the complex microcr...