We found that multi-layer coating of a Si substrate with SiO2 dielectric nanoparticles (NPs) was an effective method to suppress light reflection by silicon solar cells. To suppress light reflection, two conditions are required for the coating: 1) The difference of refractive indexes between air and Si should be alleviated, and 2) the quarter-wavelength antireflection condition should be satisfied while avoiding intrinsic absorption loss. Light reflection was reduced due to destructive interference at certain wavelengths that depended on the layer thickness. For the same thickness dielectric layer, smaller NPs enhanced antireflectance more than larger NPs due to a decrease in scattering loss by the smaller NPs.This work was supported by the...
We present a nano-patterned dielectric coating for crystalline Si solar cells that combines excellen...
Photocurrent enhancement induced by plasmonic light trapping is of great interest for photovoltaics....
Photocurrent enhancement induced by plasmonic light trapping is of great interest for photovoltaics....
Significant photocurrent enhancement of 0.4 mA/cm2 has been achieved for industrial textured multicr...
Significant photocurrent enhancement of 0.4 mA/cm2 has been achieved for industrial textured multicr...
In this study, we sought to enhance the photovoltaic performance of silicon solar cells by coating t...
The design and optimization of a nanostructured antireflective coatings for Si solar cells were perf...
The effect of single and double-layer anti-reflective coatings on efficiency enhancement of silicon ...
In this study, we sought to enhance the output power and conversion efficiency of textured silicon s...
The optical properties of a textured antireflective coating (ARC) polymeric film are engineered by c...
Solar energy generation gains in significance within the scope of a sustainable and environmentally ...
The cover glass on solar modules provides protection for the underlying solar cells but also leads t...
A very useful anti-reflection (AR) coating, having characteristics quite similar to silicon monoxide...
Graduation date: 2017Access restricted to the OSU Community, at author's request, from January 18, 2...
We present a nano-patterned dielectric coating for crystalline Si solar cells that combines excellen...
We present a nano-patterned dielectric coating for crystalline Si solar cells that combines excellen...
Photocurrent enhancement induced by plasmonic light trapping is of great interest for photovoltaics....
Photocurrent enhancement induced by plasmonic light trapping is of great interest for photovoltaics....
Significant photocurrent enhancement of 0.4 mA/cm2 has been achieved for industrial textured multicr...
Significant photocurrent enhancement of 0.4 mA/cm2 has been achieved for industrial textured multicr...
In this study, we sought to enhance the photovoltaic performance of silicon solar cells by coating t...
The design and optimization of a nanostructured antireflective coatings for Si solar cells were perf...
The effect of single and double-layer anti-reflective coatings on efficiency enhancement of silicon ...
In this study, we sought to enhance the output power and conversion efficiency of textured silicon s...
The optical properties of a textured antireflective coating (ARC) polymeric film are engineered by c...
Solar energy generation gains in significance within the scope of a sustainable and environmentally ...
The cover glass on solar modules provides protection for the underlying solar cells but also leads t...
A very useful anti-reflection (AR) coating, having characteristics quite similar to silicon monoxide...
Graduation date: 2017Access restricted to the OSU Community, at author's request, from January 18, 2...
We present a nano-patterned dielectric coating for crystalline Si solar cells that combines excellen...
We present a nano-patterned dielectric coating for crystalline Si solar cells that combines excellen...
Photocurrent enhancement induced by plasmonic light trapping is of great interest for photovoltaics....
Photocurrent enhancement induced by plasmonic light trapping is of great interest for photovoltaics....