The efficiency of thin film Si photovoltaic (PV) cells is lower than cells made of c-Si wafers, but thin film solar cells provide a PV technology with lower materials consumption and less energy used in production. Therefore, research is ongoing to enhance the absorption of these cells while making the silicon layer even thinner. This will boost the electrical performance and increase the industrial production yield as well as reduce manufacturing costs. By implementing a smart geometric design of the solar cell, light is managed such that the absorption is optimized. Apart from geometric optics, plasmonic effects can further enhance the absorption. In this study, improved light management is shown by interaction of light with the dielectri...
Recent research in the rapidly emerging field of plasmonics has shown the potential to significantly...
Thin-film photovoltaic cells are a promising technology that can harvest solar energy at a low cost....
We study n-i-p amorphous silicon solar cells with light-scattering nanoparticles in the back reflect...
The efficiency of thin film Si photovoltaic (PV) cells is lower than cells made of c-Si wafers, but ...
Thin-film solar cells have the potential to significantly decrease the cost of photovoltaics. Light ...
We experimentally investigate the light-trapping effect of plasmonic reflection grating back contact...
M.J.M. acknowledges funding from FCT through the grant SFRH/BPD/115566/2016. ALTALUZ (Reference PTD...
Photovoltaics are a key technology which can meet rising global demand for clean energy. However, si...
We find that three mechanisms lead to the absorption enhancements of light in a thin-film amorphous ...
In this study, we experimentally investigate the light-trapping effect of plasmonic reflection grati...
Lükermann F. Plasmon supported defect absorption in amorphous silicon thin film solar cells and devi...
Plasmonic nanostructures have been recently investigated as a possible way to improve absorption of ...
Photovoltaic technologies are likely to become one of the world’s major renewable energy generators ...
We report on the design, fabrication, and measurement of ultrathin film a-Si:H solar cells with nano...
Light trapping application is crucial in thin-film silicon solar cells in order to increase light ab...
Recent research in the rapidly emerging field of plasmonics has shown the potential to significantly...
Thin-film photovoltaic cells are a promising technology that can harvest solar energy at a low cost....
We study n-i-p amorphous silicon solar cells with light-scattering nanoparticles in the back reflect...
The efficiency of thin film Si photovoltaic (PV) cells is lower than cells made of c-Si wafers, but ...
Thin-film solar cells have the potential to significantly decrease the cost of photovoltaics. Light ...
We experimentally investigate the light-trapping effect of plasmonic reflection grating back contact...
M.J.M. acknowledges funding from FCT through the grant SFRH/BPD/115566/2016. ALTALUZ (Reference PTD...
Photovoltaics are a key technology which can meet rising global demand for clean energy. However, si...
We find that three mechanisms lead to the absorption enhancements of light in a thin-film amorphous ...
In this study, we experimentally investigate the light-trapping effect of plasmonic reflection grati...
Lükermann F. Plasmon supported defect absorption in amorphous silicon thin film solar cells and devi...
Plasmonic nanostructures have been recently investigated as a possible way to improve absorption of ...
Photovoltaic technologies are likely to become one of the world’s major renewable energy generators ...
We report on the design, fabrication, and measurement of ultrathin film a-Si:H solar cells with nano...
Light trapping application is crucial in thin-film silicon solar cells in order to increase light ab...
Recent research in the rapidly emerging field of plasmonics has shown the potential to significantly...
Thin-film photovoltaic cells are a promising technology that can harvest solar energy at a low cost....
We study n-i-p amorphous silicon solar cells with light-scattering nanoparticles in the back reflect...