Significant photocurrent enhancement of 0.4 mA/cm2 has been achieved for industrial textured multicrystalline silicon solar cells, due to the light trapping provided by aluminium nanoparticle enhanced antireflection coating. Aluminium nanoparticles support surface plasmon resonances, which can effectively scatter the light into the solar cells. By blue shifting the detrimental Fano resonances away from the important silicon absorption spectrum, aluminium nanoparticles can provide a broadband light absorption enhancement without a reduction at the short wavelengths. Combining the discovery with 75 nm silicon nitride antireflection coating, which can significantly enhance the absorption at the peak solar spectrum, we have achieved the strong ...
Metal nanoparticles have strong optical resonances, which can be used to enhance optical absorption,...
We found that multi-layer coating of a Si substrate with SiO2 dielectric nanoparticles (NPs) was an ...
Metal nanoparticles have strong optical resonances, which can be used to enhance optical absorption,...
Significant photocurrent enhancement of 0.4 mA/cm2 has been achieved for industrial textured multicr...
Light trapping is of critical importance for constructing high efficiency solar cells. In this paper...
In this paper low cost and earth abundant Al nanoparticles are simulated and compared with noble met...
Photocurrent enhancement induced by plasmonic light trapping is of great interest for photovoltaics....
This article presents an effective structural design arrangement for light trapping in the front sur...
This article presents an effective structural design arrangement for light trapping in the front sur...
We examine the enhancement effects of switching from traditional silver nanoparticles (NPs), which a...
Plasmonic metal nanoparticles supporting localized surface plasmon resonances have attracted a great...
Plasmonic nanostructures have been recently investigated as a possible way to improve absorption of ...
This research investigated the cutting-edge technology nanophotonics to enhance the light absorption...
Crystalline silicon solar cells are predominant and occupying more than 89% of the global solar phot...
We find that three mechanisms lead to the absorption enhancements of light in a thin-film amorphous ...
Metal nanoparticles have strong optical resonances, which can be used to enhance optical absorption,...
We found that multi-layer coating of a Si substrate with SiO2 dielectric nanoparticles (NPs) was an ...
Metal nanoparticles have strong optical resonances, which can be used to enhance optical absorption,...
Significant photocurrent enhancement of 0.4 mA/cm2 has been achieved for industrial textured multicr...
Light trapping is of critical importance for constructing high efficiency solar cells. In this paper...
In this paper low cost and earth abundant Al nanoparticles are simulated and compared with noble met...
Photocurrent enhancement induced by plasmonic light trapping is of great interest for photovoltaics....
This article presents an effective structural design arrangement for light trapping in the front sur...
This article presents an effective structural design arrangement for light trapping in the front sur...
We examine the enhancement effects of switching from traditional silver nanoparticles (NPs), which a...
Plasmonic metal nanoparticles supporting localized surface plasmon resonances have attracted a great...
Plasmonic nanostructures have been recently investigated as a possible way to improve absorption of ...
This research investigated the cutting-edge technology nanophotonics to enhance the light absorption...
Crystalline silicon solar cells are predominant and occupying more than 89% of the global solar phot...
We find that three mechanisms lead to the absorption enhancements of light in a thin-film amorphous ...
Metal nanoparticles have strong optical resonances, which can be used to enhance optical absorption,...
We found that multi-layer coating of a Si substrate with SiO2 dielectric nanoparticles (NPs) was an ...
Metal nanoparticles have strong optical resonances, which can be used to enhance optical absorption,...