Black silicon (b-Si) nanotextures can significantly enhance the light absorption of crystalline silicon solar cells. Nevertheless, for a successful application of b-Si textures in industrially relevant solar cell architectures, it is imperative that charge-carrier recombination at particularly highly n-type doped black Si surfaces is further suppressed. In this work, this issue is addressed through systematically studying lowly and highly doped b-Si surfaces, which are passivated by atomic-layer-deposited Al2O3 films or SiO2/Al2O3 stacks. In lowly doped b-Si textures, a very low surface recombination prefactor of 16 fA/cm2 was found after surface passivation by Al2O3. The excellent passivation was achieved after a dedicated wet-chemical tre...
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...
Thin crystalline silicon (c-Si) solar cells are beneficial for reducing the materials cost, but requ...
Black silicon (b-Si) nanotextures can significantly enhance the light absorption of crystalline sili...
Black silicon (b-Si) nanotextures can significantly enhance the light absorption of crystalline sili...
Black silicon (b-Si) nanotextures can significantly enhance the light absorption of crystalline sili...
Black silicon (b-Si) nanotextures can significantly enhance the light absorption of crystalline sili...
Black silicon (b-Si) nanotextures can significantly enhance the light absorption of crystalline sili...
Optically black silicon nanostructures show excellent anti-reflection and light trapping properties ...
AbstractOptically black silicon nanostructures show excellent anti-reflection and light trapping pro...
Black silicon (b-Si) is a promising surface structure for solar cells due to its low reflectance and...
The reduction in electronic recombination losses by the passivation of silicon surfaces is a critica...
The reduction in electronic recombination losses by the passivation of silicon surfaces is a critica...
The reduction in electronic recombination losses by the passivation of silicon surfaces is a critica...
The reduction in electronic recombination losses by the passivation of silicon surfaces is a critica...
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...
Thin crystalline silicon (c-Si) solar cells are beneficial for reducing the materials cost, but requ...
Black silicon (b-Si) nanotextures can significantly enhance the light absorption of crystalline sili...
Black silicon (b-Si) nanotextures can significantly enhance the light absorption of crystalline sili...
Black silicon (b-Si) nanotextures can significantly enhance the light absorption of crystalline sili...
Black silicon (b-Si) nanotextures can significantly enhance the light absorption of crystalline sili...
Black silicon (b-Si) nanotextures can significantly enhance the light absorption of crystalline sili...
Optically black silicon nanostructures show excellent anti-reflection and light trapping properties ...
AbstractOptically black silicon nanostructures show excellent anti-reflection and light trapping pro...
Black silicon (b-Si) is a promising surface structure for solar cells due to its low reflectance and...
The reduction in electronic recombination losses by the passivation of silicon surfaces is a critica...
The reduction in electronic recombination losses by the passivation of silicon surfaces is a critica...
The reduction in electronic recombination losses by the passivation of silicon surfaces is a critica...
The reduction in electronic recombination losses by the passivation of silicon surfaces is a critica...
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...
Thin crystalline silicon (c-Si) solar cells are beneficial for reducing the materials cost, but requ...