Three types of patterns acting as light-scattering centers were constructed on bulk glass surfaces and applied to solar cell fabrication. In order to fabricate a scattering center in the transparent conducted oxide (TCO) layer, the SiO2-based solution hydrogen silsesquioxane (HSQ; Dow Corning FOx-16) was used for direct nano-patterning. Direct nano-patterning is a simple and fast process that exploits the solvent permeability of poly(dimethylsiloxane) (PDMS). The nano- and micro-structured SiO2 layer fabricated directs diffused light into the active layer of the solar cell, enabling effective use of this layer. This increases the external quantum efficiency and conversion efficiency of the cell. Additionally, a thinner Si junction was fabri...
Nano-scale randomly textured front transparent oxides are superposed on micro-scale etched glass sub...
Hydrogenated amorphous-silicon (a-Si:H) thin-film solar cells have advantages of relatively simple t...
We report on the fabrication, integration, and simulation, both optical and optoelectrical, of two-d...
We present a novel method to achieve light trapping in thin film silicon solar cells. Unlike the com...
We present a novel method to achieve light trapping in thin film silicon solar cells. Unlike the com...
Efficient light management is key for optimal performance of silicon solar cells. For monocrystallin...
DoctorThin film solar cells have attracted much attention as renewable energy source due to their ad...
In this dissertation, a series of experimental and simulation studies were carried out in an effort ...
In this work, we report a nanostructure that grants a significant enhancement in optical efficiency ...
A cylindrical Si3N4 nanopattern whose heights was 200 nm was fabricated on a glass substrate, and an...
Although texturing of the transparent electrode of thin-film solar cells has long been used to enhan...
The substrate of an a-Si:H solar cell with microscale surface roughness generally shows high diffuse...
We experimentally investigate the light-trapping effect of plasmonic reflection grating back contact...
For solar cells based on thin-film microcrystalline (mu c-Si:H) or amorphous silicon (a-Si:H) with a...
Among various semiconductor technologies applied in photovoltaics, thin-film technologies offer seve...
Nano-scale randomly textured front transparent oxides are superposed on micro-scale etched glass sub...
Hydrogenated amorphous-silicon (a-Si:H) thin-film solar cells have advantages of relatively simple t...
We report on the fabrication, integration, and simulation, both optical and optoelectrical, of two-d...
We present a novel method to achieve light trapping in thin film silicon solar cells. Unlike the com...
We present a novel method to achieve light trapping in thin film silicon solar cells. Unlike the com...
Efficient light management is key for optimal performance of silicon solar cells. For monocrystallin...
DoctorThin film solar cells have attracted much attention as renewable energy source due to their ad...
In this dissertation, a series of experimental and simulation studies were carried out in an effort ...
In this work, we report a nanostructure that grants a significant enhancement in optical efficiency ...
A cylindrical Si3N4 nanopattern whose heights was 200 nm was fabricated on a glass substrate, and an...
Although texturing of the transparent electrode of thin-film solar cells has long been used to enhan...
The substrate of an a-Si:H solar cell with microscale surface roughness generally shows high diffuse...
We experimentally investigate the light-trapping effect of plasmonic reflection grating back contact...
For solar cells based on thin-film microcrystalline (mu c-Si:H) or amorphous silicon (a-Si:H) with a...
Among various semiconductor technologies applied in photovoltaics, thin-film technologies offer seve...
Nano-scale randomly textured front transparent oxides are superposed on micro-scale etched glass sub...
Hydrogenated amorphous-silicon (a-Si:H) thin-film solar cells have advantages of relatively simple t...
We report on the fabrication, integration, and simulation, both optical and optoelectrical, of two-d...