In this work the effects of plasmonics, nano-focusing, and orthogonalization of carrier and photon pathways are simultaneously explored by measuring the photocurrents in an elongated nano-scale solar cell with a silver nanoneedle inside. The silver nanoneedles formed the support of a conformally grown hydrogenated amorphous silicon (a-Si:H) n-i-p junction around it. A spherical morphology of the solar cell functions as a nano-lens, focusing incoming light directly on the silver nanoneedle. We found that plasmonics, geometric optics, and Fresnel reflections affect the nanostructured solar cell performance, depending strongly on light incidence angle and polarization. This provides valuable insight in solar cell processes in which novel conce...
We find that three mechanisms lead to the absorption enhancements of light in a thin-film amorphous ...
AbstractIn this work silver nanowires were used as the transparent conductive electrode on a crystal...
We experimentally investigate the light-trapping effect of plasmonic reflection grating back contact...
In this work the effects of plasmonics, nano-focusing, and orthogonalization of carrier and photon p...
In this chapter the effects of the plasmonic response in an elongated nano-scale solar cell with a s...
Plasmonic nanostructures have been recently investigated as a possible way to improve absorption of ...
We study n-i-p amorphous silicon solar cells with light-scattering nanoparticles in the back reflect...
\u3cp\u3eThe efficiency of thin film Si photovoltaic (PV) cells is lower than cells made of c-Si waf...
Plasmonic thin film solar cells (modified with metallic nanostructures) often display enhanced light...
We present a design of implementing plasmonic nanoparticles made from silver onto the surface of amo...
Nanosphere lithography (NSL) provides an opportunity for a low-cost and scalable method to optically...
We report a novel plasmonic solar cell design implemented on an amorphous silicon platform. The enha...
We investigate the influence of nanoparticle height on light trapping in thin-film solar cells cover...
Photocurrent enhancement in thin a-Si:H solar cells due to the plasmonic light trapping is investiga...
Plasmonic light trapping in thin film silicon solar cells is a promising route to achieve high effic...
We find that three mechanisms lead to the absorption enhancements of light in a thin-film amorphous ...
AbstractIn this work silver nanowires were used as the transparent conductive electrode on a crystal...
We experimentally investigate the light-trapping effect of plasmonic reflection grating back contact...
In this work the effects of plasmonics, nano-focusing, and orthogonalization of carrier and photon p...
In this chapter the effects of the plasmonic response in an elongated nano-scale solar cell with a s...
Plasmonic nanostructures have been recently investigated as a possible way to improve absorption of ...
We study n-i-p amorphous silicon solar cells with light-scattering nanoparticles in the back reflect...
\u3cp\u3eThe efficiency of thin film Si photovoltaic (PV) cells is lower than cells made of c-Si waf...
Plasmonic thin film solar cells (modified with metallic nanostructures) often display enhanced light...
We present a design of implementing plasmonic nanoparticles made from silver onto the surface of amo...
Nanosphere lithography (NSL) provides an opportunity for a low-cost and scalable method to optically...
We report a novel plasmonic solar cell design implemented on an amorphous silicon platform. The enha...
We investigate the influence of nanoparticle height on light trapping in thin-film solar cells cover...
Photocurrent enhancement in thin a-Si:H solar cells due to the plasmonic light trapping is investiga...
Plasmonic light trapping in thin film silicon solar cells is a promising route to achieve high effic...
We find that three mechanisms lead to the absorption enhancements of light in a thin-film amorphous ...
AbstractIn this work silver nanowires were used as the transparent conductive electrode on a crystal...
We experimentally investigate the light-trapping effect of plasmonic reflection grating back contact...