In this paper low cost and earth abundant Al nanoparticles are simulated and compared with noble metal nanoparticles Ag and Au for plasmonic light trapping in Si wafer solar cells. It has been found tailored Al nanoparticles enable broadband light trapping leading to a 28.7% photon absorption enhancement in Si wafers, which is much larger than that induced by Ag or Au. Once combined with the SiN x anti-reflection coating, Al nanoparticles can produce a 42.5% enhancement, which is 4.3% higher than the standard SiN x due to the increased absorption in both the blue and near-infrared regions
Metal nanoparticles have strong optical resonances, which can be used to enhance optical absorption,...
The behaviour of plasmonic metal nanoparticles (MNPs) placed in contact with a thin dielectric film ...
The solar cell market is predominantly based on textured screen-printed solar cells. Due to parasiti...
In this paper low cost and earth abundant Al nanoparticles are simulated and compared with noble met...
Significant photocurrent enhancement of 0.4 mA/cm2 has been achieved for industrial textured multicr...
This research investigated the cutting-edge technology nanophotonics to enhance the light absorption...
Light trapping is of critical importance for constructing high efficiency solar cells. In this paper...
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...
Plasmonic metal nanoparticles supporting localized surface plasmon resonances have attracted a great...
The optical properties of metal nanoparticles have been investigated by simulation and experimental ...
We examine the enhancement effects of switching from traditional silver nanoparticles (NPs), which a...
In this study nanodisks made from aluminum are incorporated in a back-reflector scheme in order to e...
The optical properties of metal nanoparticles are explored as a function of lateral size, shape,aspe...
Metal nanoparticles have strong optical resonances, which can be used to enhance optical absorption,...
Metal nanoparticles have strong optical resonances, which can be used to enhance optical absorption,...
The behaviour of plasmonic metal nanoparticles (MNPs) placed in contact with a thin dielectric film ...
The solar cell market is predominantly based on textured screen-printed solar cells. Due to parasiti...
In this paper low cost and earth abundant Al nanoparticles are simulated and compared with noble met...
Significant photocurrent enhancement of 0.4 mA/cm2 has been achieved for industrial textured multicr...
This research investigated the cutting-edge technology nanophotonics to enhance the light absorption...
Light trapping is of critical importance for constructing high efficiency solar cells. In this paper...
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...
Plasmonic metal nanoparticles supporting localized surface plasmon resonances have attracted a great...
The optical properties of metal nanoparticles have been investigated by simulation and experimental ...
We examine the enhancement effects of switching from traditional silver nanoparticles (NPs), which a...
In this study nanodisks made from aluminum are incorporated in a back-reflector scheme in order to e...
The optical properties of metal nanoparticles are explored as a function of lateral size, shape,aspe...
Metal nanoparticles have strong optical resonances, which can be used to enhance optical absorption,...
Metal nanoparticles have strong optical resonances, which can be used to enhance optical absorption,...
The behaviour of plasmonic metal nanoparticles (MNPs) placed in contact with a thin dielectric film ...
The solar cell market is predominantly based on textured screen-printed solar cells. Due to parasiti...