Nonplanar structured photovoltaic absorber design has potential to achieve high solar cell efficiency with significantly reduced material use. We report optoelectronic simulations that highlight photon and generated carrier management opportunities for improvement of thin film Cu(In_xGa_(1−x))Se_2 (CIGS) device performance. Structures realized via either self-assembly or patterning via nanoimprint lithography, and also a combination of both are predicted to exhibit significant increases in short circuit current density and open circuit voltage simultaneously. The structures investigated include: 1) self-assembled nonplanar structures that strongly scatter incident light and enhance carrier generation near regions of high electric potential,...
Reducing absorber layer thickness below 500 nm in regular Cu(In,Ga)Se2 (CIGS) solar cells decreases ...
Reducing the absorber layer thickness below 1 μm for a regular copper indium gallium di-selenide (CI...
Chalcopyrite solar cells exhibit one of the highest conversion efficiencies among thin-film solar ce...
The sub-micrometer absorber regime is currently being explored to reduce materials usage and deposit...
One of the key approaches to slow down and eventually prevent dramatic climate change is direct elec...
International audienceWe have used 3-D optical modelling to investigate light management concepts ba...
In ultra-thin chalcopyrite solar cells and photovoltaic modules, efficient light management is requi...
We have used 3-D optical modelling to investigate light management concepts based on periodic textur...
Textured transparent conductors are widely used in thin-film silicon solar cells. They lower the ref...
Copper indium selenide chalcopyrite structure alloys with gallium CIGS are unique among the highes...
Production of electric energy from sunlight has become a cost competitive alternative to conventiona...
In our work, we have simulated and optimized solar cells based on the mechanically stacked system us...
We experimentally demonstrate photocurrent enhancement in ultrathin Cu(In,Ga)Se<sub>2</sub> (CIGSe) ...
The material supply to build renewable energy conversion systems needs to be considered from both a ...
As world energy demands continue to increase, the need to generate electricity from a broader variet...
Reducing absorber layer thickness below 500 nm in regular Cu(In,Ga)Se2 (CIGS) solar cells decreases ...
Reducing the absorber layer thickness below 1 μm for a regular copper indium gallium di-selenide (CI...
Chalcopyrite solar cells exhibit one of the highest conversion efficiencies among thin-film solar ce...
The sub-micrometer absorber regime is currently being explored to reduce materials usage and deposit...
One of the key approaches to slow down and eventually prevent dramatic climate change is direct elec...
International audienceWe have used 3-D optical modelling to investigate light management concepts ba...
In ultra-thin chalcopyrite solar cells and photovoltaic modules, efficient light management is requi...
We have used 3-D optical modelling to investigate light management concepts based on periodic textur...
Textured transparent conductors are widely used in thin-film silicon solar cells. They lower the ref...
Copper indium selenide chalcopyrite structure alloys with gallium CIGS are unique among the highes...
Production of electric energy from sunlight has become a cost competitive alternative to conventiona...
In our work, we have simulated and optimized solar cells based on the mechanically stacked system us...
We experimentally demonstrate photocurrent enhancement in ultrathin Cu(In,Ga)Se<sub>2</sub> (CIGSe) ...
The material supply to build renewable energy conversion systems needs to be considered from both a ...
As world energy demands continue to increase, the need to generate electricity from a broader variet...
Reducing absorber layer thickness below 500 nm in regular Cu(In,Ga)Se2 (CIGS) solar cells decreases ...
Reducing the absorber layer thickness below 1 μm for a regular copper indium gallium di-selenide (CI...
Chalcopyrite solar cells exhibit one of the highest conversion efficiencies among thin-film solar ce...