We examine the enhancement effects of switching from silver (Ag) nanoparticles (NPs)to nonresonant aluminium (Al) NPs on light absorption in a-Si solar cells. Al nanocubes on ITO spacer increase absorbed power by 24.3% over a cell with Ag nanocubes and 19.4% over a bare cell
In this paper low cost and earth abundant Al nanoparticles are simulated and compared with noble met...
The surface plasmon polariton(SPP) is a novel approach for light trapping in solar cells. SPP enhanc...
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...
The behaviour of plasmonic metal nanoparticles (MNPs) placed in contact with a thin dielectric film ...
Our paper presents a detailed numerical simulation and experimental study of the efficiency enhancem...
Plasmonic metal nanoparticles supporting localized surface plasmon resonances have attracted a great...
This research investigated the cutting-edge technology nanophotonics to enhance the light absorption...
Significant photocurrent enhancement of 0.4 mA/cm2 has been achieved for industrial textured multicr...
The need of renewable energy is increasing as the global energy demand increases concurrently with g...
We find that three mechanisms lead to the absorption enhancements of light in a thin-film amorphous ...
We present a design of implementing plasmonic nanoparticles made from silver onto the surface of amo...
This article presents an effective structural design arrangement for light trapping in the front sur...
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,...
In this paper low cost and earth abundant Al nanoparticles are simulated and compared with noble met...
The surface plasmon polariton(SPP) is a novel approach for light trapping in solar cells. SPP enhanc...
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...
The behaviour of plasmonic metal nanoparticles (MNPs) placed in contact with a thin dielectric film ...
Our paper presents a detailed numerical simulation and experimental study of the efficiency enhancem...
Plasmonic metal nanoparticles supporting localized surface plasmon resonances have attracted a great...
This research investigated the cutting-edge technology nanophotonics to enhance the light absorption...
Significant photocurrent enhancement of 0.4 mA/cm2 has been achieved for industrial textured multicr...
The need of renewable energy is increasing as the global energy demand increases concurrently with g...
We find that three mechanisms lead to the absorption enhancements of light in a thin-film amorphous ...
We present a design of implementing plasmonic nanoparticles made from silver onto the surface of amo...
This article presents an effective structural design arrangement for light trapping in the front sur...
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,...
In this paper low cost and earth abundant Al nanoparticles are simulated and compared with noble met...
The surface plasmon polariton(SPP) is a novel approach for light trapping in solar cells. SPP enhanc...
This article presents an effective structural design arrangement for light trapping in the front sur...