Low-cost hydrogenated amorphous silicon solar cells (a-Si:H) can perform better and be more competitive by including nanostructures. An optimized nano-dimer structure embedded in close contact with the back electrode of an aSi:H ultra-thin solar cells can enhance the deliverable short-circuit current up to 27.5 %. This enhancement is the result of an increase in the absorption at the active layer, that is the product of an efficient scattering from the nanostructure. From our calculations, the nano-dimer structure must be made out of a high-index of refraction material, like GaP. The evaluation of the scattering and absorption cross section of the structure supports the calculated enhancement in short-circuit current, that is always accompa...
We report on the design, fabrication, and measurement of ultrathin film a-Si:H solar cells with nano...
We propose a nanostructured three-dimensional (nano-3D) solar cell design employing an ultrathin hyd...
We propose a nanostructured three-dimensional (nano-3D) solar cell design employing an ultrathin hyd...
Hydrogenated amorphous silicon (a-Si:H) solar cells have some performance limitations related to the...
Hydrogenated amorphous silicon (a-Si:H) solar cells have some performance limitations related to the...
DoctorThin film solar cells have attracted much attention as renewable energy source due to their ad...
An amorphous silicon solar cell on a periodic nanocone back reflector with a high 9.7% initial conve...
We study polarization independent improved light trapping in commercial thin film hydrogenated amorp...
Ultrathin amorphous silicon hydrogenated (aSi-H) solar cells grown on a one-dimensional (1-D) dielec...
International audienceBroadband light trapping is numerically demonstrated in ultra-thin solar cells...
International audienceBroadband light trapping is numerically demonstrated in ultra-thin solar cells...
International audienceBroadband light trapping is numerically demonstrated in ultra-thin solar cells...
International audienceBroadband light trapping is numerically demonstrated in ultra-thin solar cells...
We report on the design, fabrication, and measurement of ultrathin film a-Si:H solar cells with nano...
The impact of controlled nanopatterning on the Ag back contact of an n-i-p a-Si:H solar cell was inv...
We report on the design, fabrication, and measurement of ultrathin film a-Si:H solar cells with nano...
We propose a nanostructured three-dimensional (nano-3D) solar cell design employing an ultrathin hyd...
We propose a nanostructured three-dimensional (nano-3D) solar cell design employing an ultrathin hyd...
Hydrogenated amorphous silicon (a-Si:H) solar cells have some performance limitations related to the...
Hydrogenated amorphous silicon (a-Si:H) solar cells have some performance limitations related to the...
DoctorThin film solar cells have attracted much attention as renewable energy source due to their ad...
An amorphous silicon solar cell on a periodic nanocone back reflector with a high 9.7% initial conve...
We study polarization independent improved light trapping in commercial thin film hydrogenated amorp...
Ultrathin amorphous silicon hydrogenated (aSi-H) solar cells grown on a one-dimensional (1-D) dielec...
International audienceBroadband light trapping is numerically demonstrated in ultra-thin solar cells...
International audienceBroadband light trapping is numerically demonstrated in ultra-thin solar cells...
International audienceBroadband light trapping is numerically demonstrated in ultra-thin solar cells...
International audienceBroadband light trapping is numerically demonstrated in ultra-thin solar cells...
We report on the design, fabrication, and measurement of ultrathin film a-Si:H solar cells with nano...
The impact of controlled nanopatterning on the Ag back contact of an n-i-p a-Si:H solar cell was inv...
We report on the design, fabrication, and measurement of ultrathin film a-Si:H solar cells with nano...
We propose a nanostructured three-dimensional (nano-3D) solar cell design employing an ultrathin hyd...
We propose a nanostructured three-dimensional (nano-3D) solar cell design employing an ultrathin hyd...