Recently plasmonic effects have gained tremendous interest in solar cell research because they are deemed to be able to dramatically boost the efficiency of thin-film solar cells. However, despite of the intensive efforts, the desired broadband enhancement, which is critical for real device performance improvement, has yet been achieved with simple fabrication and integration methods appreciated by the solar industry. We propose in this paper a novel idea of using nucleated silver nanoparticles to effectively scatter light in a broadband wavelength range to realize pronounced absorption enhancement in the silicon absorbing layer. Since it does not require critical patterning, experimentally these tailored nanoparticles were achieved by the ...
Plasmonic light trapping in thin film silicon solar cells is a promising route to achieve high effic...
Recent research in the rapidly emerging field of plasmonics has shown the potential to significantly...
Recent research in the rapidly emerging field of plasmonics has shown the potential to significantly...
Recently plasmonic effects have gained tremendous interest in solar cell research because they are d...
We find that three mechanisms lead to the absorption enhancements of light in a thin-film amorphous ...
Thin-film silicon solar cells need efficient light absorption to achieve high efficiencies. The stan...
Thin-film photovoltaic cells are a promising technology that can harvest solar energy at a low cost....
In this work, we investigate the effects produced on the light absorption and scattering by silver n...
Thesis (Ph. D.)--University of Rochester. Materials Science Program, 2013As the supply of fossil fue...
Moulin E, Sukmanowski J, Luo P, Carius R, Royer FX, Stiebig H. Improved light absorption in thin-fil...
Crystalline silicon solar cells are predominant and occupying more than 89% of the global solar phot...
Crystalline silicon solar cells are predominant and occupying more than 89% of the global solar phot...
The behaviour of plasmonic metal nanoparticles (MNPs) placed in contact with a thin dielectric film ...
Plasmonic light trapping in thin film silicon solar cells is a promising route to achieve high effic...
Recent research in the rapidly emerging field of plasmonics has shown the potential to significantly...
Plasmonic light trapping in thin film silicon solar cells is a promising route to achieve high effic...
Recent research in the rapidly emerging field of plasmonics has shown the potential to significantly...
Recent research in the rapidly emerging field of plasmonics has shown the potential to significantly...
Recently plasmonic effects have gained tremendous interest in solar cell research because they are d...
We find that three mechanisms lead to the absorption enhancements of light in a thin-film amorphous ...
Thin-film silicon solar cells need efficient light absorption to achieve high efficiencies. The stan...
Thin-film photovoltaic cells are a promising technology that can harvest solar energy at a low cost....
In this work, we investigate the effects produced on the light absorption and scattering by silver n...
Thesis (Ph. D.)--University of Rochester. Materials Science Program, 2013As the supply of fossil fue...
Moulin E, Sukmanowski J, Luo P, Carius R, Royer FX, Stiebig H. Improved light absorption in thin-fil...
Crystalline silicon solar cells are predominant and occupying more than 89% of the global solar phot...
Crystalline silicon solar cells are predominant and occupying more than 89% of the global solar phot...
The behaviour of plasmonic metal nanoparticles (MNPs) placed in contact with a thin dielectric film ...
Plasmonic light trapping in thin film silicon solar cells is a promising route to achieve high effic...
Recent research in the rapidly emerging field of plasmonics has shown the potential to significantly...
Plasmonic light trapping in thin film silicon solar cells is a promising route to achieve high effic...
Recent research in the rapidly emerging field of plasmonics has shown the potential to significantly...
Recent research in the rapidly emerging field of plasmonics has shown the potential to significantly...