AbstractIn this work silver nanowires were used as the transparent conductive electrode on a crystalline silicon solar cell in place of the commonly used screen printed grid. Light transmission and surface characterisation of the cells displays an average of 22% more light transmission than the physical non-AgNW shaded area of the cell surface. Further to this it is observed that plasmonic effects result in an increased scattering of incoming light into the cell, which also reduced the amount of light reflected from the cell’s front plane. The cells with silver nanowire electrodes did not, however, show improved current–voltage characteristics compared to cells without a front electrode. This is attributed to the overall low light transmiss...
Surface plasmons, which exist along the interface of a metal and a dielectric, have been proposed as...
We present a design of implementing plasmonic nanoparticles made from silver onto the surface of amo...
In this work the effects of plasmonics, nano-focusing, and orthogonalization of carrier and photon p...
In this work silver nanowires were used as the transparent conductive electrode on a crystalline sil...
AbstractIn this work silver nanowires were used as the transparent conductive electrode on a crystal...
Losses caused by the metal top contacts still remain as an issue in crystalline silicon (Si) solar c...
Metal nanowire networks are emerging as next generation transparent electrodes for photovoltaic devi...
AbstractPlasmonic effects in thin film silicon solar cell are an emerging technology and area of rig...
We study n-i-p amorphous silicon solar cells with light-scattering nanoparticles in the back reflect...
Reflection and transmission through a solar cell can be significantly reduced using light-trapping s...
\u3cp\u3eThe efficiency of thin film Si photovoltaic (PV) cells is lower than cells made of c-Si waf...
Management of the light losses associated with silver nanoparticle integrated plasmonic back reflect...
The effect of silver nanoparticles showing localised plasmonic resonances on the efficiency of thin ...
We study the effect of metal nanoparticles, showing localised plasmonic resonances, on the spectrall...
Dr. Xie's research focused on the use of metal nanowire networks as transparent electrodes on silico...
Surface plasmons, which exist along the interface of a metal and a dielectric, have been proposed as...
We present a design of implementing plasmonic nanoparticles made from silver onto the surface of amo...
In this work the effects of plasmonics, nano-focusing, and orthogonalization of carrier and photon p...
In this work silver nanowires were used as the transparent conductive electrode on a crystalline sil...
AbstractIn this work silver nanowires were used as the transparent conductive electrode on a crystal...
Losses caused by the metal top contacts still remain as an issue in crystalline silicon (Si) solar c...
Metal nanowire networks are emerging as next generation transparent electrodes for photovoltaic devi...
AbstractPlasmonic effects in thin film silicon solar cell are an emerging technology and area of rig...
We study n-i-p amorphous silicon solar cells with light-scattering nanoparticles in the back reflect...
Reflection and transmission through a solar cell can be significantly reduced using light-trapping s...
\u3cp\u3eThe efficiency of thin film Si photovoltaic (PV) cells is lower than cells made of c-Si waf...
Management of the light losses associated with silver nanoparticle integrated plasmonic back reflect...
The effect of silver nanoparticles showing localised plasmonic resonances on the efficiency of thin ...
We study the effect of metal nanoparticles, showing localised plasmonic resonances, on the spectrall...
Dr. Xie's research focused on the use of metal nanowire networks as transparent electrodes on silico...
Surface plasmons, which exist along the interface of a metal and a dielectric, have been proposed as...
We present a design of implementing plasmonic nanoparticles made from silver onto the surface of amo...
In this work the effects of plasmonics, nano-focusing, and orthogonalization of carrier and photon p...