Nano-scale randomly textured front transparent oxides are superposed on micro-scale etched glass substrates to form modulated surface textures. The resulting enhanced light scattering is implemented in single and double junction thin-film silicon solar cells.Electrical Sustainable EnergyElectrical Engineering, Mathematics and Computer Scienc
Enhanced light absorption in amorphous silicon thin films deposited on randomly textured zinc-oxide ...
AbstractLight trapping is essential for thin-film silicon solar cells due to their thin absorber lay...
Solar energy can fulfil mankind’s energy needs and secure a more balanced distribution of primary so...
Nano-scale randomly textured front transparent oxides are superposed on micro-scale etched glass sub...
Substrates with a modulated surface texture were prepared by combining different interface morpholog...
Substrates with a modulated surface texture were prepared by combining different interface morpholog...
Thin-film silicon solar cells make use of relatively thin layers of active material compared to wafe...
In this study, nanoimprint processing was used to realize various multiscale textures on glass subst...
Nano-textured interfaces between two media of different refractive indices scatter light. The angula...
Nano-textured interfaces between two media of different refractive indices scatter light. The angula...
Highly efficient anti‐reflection textures for solar cells that allow a fabrication using a two‐step ...
A new approach is presented to determine the angular and spectral characteristics of light diffusely...
Solar energy can fulfil mankind’s energy needs and secure a more balanced distribution of primary so...
Textured interfaces in thin-film silicon solar cells improve the efficiency by light scattering. A t...
The concept of photonic random textures for application as a light-trapping scheme in thin-film sola...
Enhanced light absorption in amorphous silicon thin films deposited on randomly textured zinc-oxide ...
AbstractLight trapping is essential for thin-film silicon solar cells due to their thin absorber lay...
Solar energy can fulfil mankind’s energy needs and secure a more balanced distribution of primary so...
Nano-scale randomly textured front transparent oxides are superposed on micro-scale etched glass sub...
Substrates with a modulated surface texture were prepared by combining different interface morpholog...
Substrates with a modulated surface texture were prepared by combining different interface morpholog...
Thin-film silicon solar cells make use of relatively thin layers of active material compared to wafe...
In this study, nanoimprint processing was used to realize various multiscale textures on glass subst...
Nano-textured interfaces between two media of different refractive indices scatter light. The angula...
Nano-textured interfaces between two media of different refractive indices scatter light. The angula...
Highly efficient anti‐reflection textures for solar cells that allow a fabrication using a two‐step ...
A new approach is presented to determine the angular and spectral characteristics of light diffusely...
Solar energy can fulfil mankind’s energy needs and secure a more balanced distribution of primary so...
Textured interfaces in thin-film silicon solar cells improve the efficiency by light scattering. A t...
The concept of photonic random textures for application as a light-trapping scheme in thin-film sola...
Enhanced light absorption in amorphous silicon thin films deposited on randomly textured zinc-oxide ...
AbstractLight trapping is essential for thin-film silicon solar cells due to their thin absorber lay...
Solar energy can fulfil mankind’s energy needs and secure a more balanced distribution of primary so...