Optical losses at the front surface of a silicon solar cell have a significant impact on efficiency, and as such, efforts to reduce reflection are necessary. In this work, a method to fabricate and passivate nanowire-pyramid hybrid structures formed on a silicon surface via wet chemical processing is presented. These high surface area structures can be utilised on the front surface of back contact silicon solar cells to maximise light absorption therein. Hemispherical reflectivity under varying incident angles is measured to study the optical enhancement conferred by these structures. The significant reduction in reflectivity (<2%) under low incident angles is maintained at high angles by the hybrid textured surface compared to surfaces ...
In this thesis, light trapping behaviour in silicon solar cells with textured front surfaces and rea...
Continuing to reduce the cost-per-watt is the key to providing affordable PV energy. In pursuit of r...
For thin silicon solar cells, standard pyramidal textures cannot be used as antireflection structure...
Nanostructuring on the surface of silicon can make high efficient solar cells possible by lowering t...
As a renewable and environmentally-friendly energy, solar energy can effectively avoid the destructi...
The nanostructuring of silicon surfaces—known as black silicon—is a promising approach to eliminate ...
The nanostructuring of silicon surfaces—known as black silicon—is a promising approach to eliminate ...
Optically black silicon nanostructures show excellent anti-reflection and light trapping properties ...
An Interdigitated Back Contact (IBC) solar cell is being developed for evaluation of emerging light ...
Light trapping ability of a solar cell can be improved by the application of various texturing schem...
AbstractOptically black silicon nanostructures show excellent anti-reflection and light trapping pro...
Optical properties of black silicon (b-Si) can be tailored to minimize reflection losses to less tha...
Absorption of the light by a solar cell can be improved significantly by light trapping structures f...
Black silicon nanotextures offer exceptionally low levels of reflectance and are of interest to the ...
Black silicon nanotextures offer exceptionally low levels of reflectance and are of interest to the ...
In this thesis, light trapping behaviour in silicon solar cells with textured front surfaces and rea...
Continuing to reduce the cost-per-watt is the key to providing affordable PV energy. In pursuit of r...
For thin silicon solar cells, standard pyramidal textures cannot be used as antireflection structure...
Nanostructuring on the surface of silicon can make high efficient solar cells possible by lowering t...
As a renewable and environmentally-friendly energy, solar energy can effectively avoid the destructi...
The nanostructuring of silicon surfaces—known as black silicon—is a promising approach to eliminate ...
The nanostructuring of silicon surfaces—known as black silicon—is a promising approach to eliminate ...
Optically black silicon nanostructures show excellent anti-reflection and light trapping properties ...
An Interdigitated Back Contact (IBC) solar cell is being developed for evaluation of emerging light ...
Light trapping ability of a solar cell can be improved by the application of various texturing schem...
AbstractOptically black silicon nanostructures show excellent anti-reflection and light trapping pro...
Optical properties of black silicon (b-Si) can be tailored to minimize reflection losses to less tha...
Absorption of the light by a solar cell can be improved significantly by light trapping structures f...
Black silicon nanotextures offer exceptionally low levels of reflectance and are of interest to the ...
Black silicon nanotextures offer exceptionally low levels of reflectance and are of interest to the ...
In this thesis, light trapping behaviour in silicon solar cells with textured front surfaces and rea...
Continuing to reduce the cost-per-watt is the key to providing affordable PV energy. In pursuit of r...
For thin silicon solar cells, standard pyramidal textures cannot be used as antireflection structure...