In this work we report on the long-term stability of black silicon surfaces passivated with atomic layer deposited (ALD) 20 nm thick Al2O3 films on p- and n-type FZ c-Si substrates. The results are directly compared with random pyramid textured counterparts. The effective surface recombination velocity Seff has been measured within a time frame of one year after activation of surface passivation. The results demonstrate that after an initial slight degradation during the first month Seff values stabilize around 45 and 25 cm/s on p- and n-type black silicon samples, respectively. These values are enough to guarantee stable high efficiency in interdigitated back-contacted (IBC) c-Si(n) solar cells (> 24.5%) using black silicon nanostructures ...
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...
In this work we report on the long-term stability of black silicon surfaces passivated with atomic l...
In this work we report on the long-term stability of black silicon surfaces passivated with atomic l...
In this work we report on the long-term stability of black silicon surfaces passivated with atomic l...
In this work we report on the long-term stability of black silicon surfaces passivated with atomic l...
AbstractIn this work we report on the long-term stability of black silicon surfaces passivated with ...
AbstractIn this work we report on the long-term stability of black silicon surfaces passivated with ...
AbstractOptically black silicon nanostructures show excellent anti-reflection and light trapping pro...
NOTICE: this is the author’s version of a work that was accepted for publication in Solar Energy Mat...
Optically black silicon nanostructures show excellent anti-reflection and light trapping properties ...
Optical properties of black silicon (b-Si) can be tailored to minimize reflection losses to less tha...
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...
In this work we report on the long-term stability of black silicon surfaces passivated with atomic l...
In this work we report on the long-term stability of black silicon surfaces passivated with atomic l...
In this work we report on the long-term stability of black silicon surfaces passivated with atomic l...
In this work we report on the long-term stability of black silicon surfaces passivated with atomic l...
AbstractIn this work we report on the long-term stability of black silicon surfaces passivated with ...
AbstractIn this work we report on the long-term stability of black silicon surfaces passivated with ...
AbstractOptically black silicon nanostructures show excellent anti-reflection and light trapping pro...
NOTICE: this is the author’s version of a work that was accepted for publication in Solar Energy Mat...
Optically black silicon nanostructures show excellent anti-reflection and light trapping properties ...
Optical properties of black silicon (b-Si) can be tailored to minimize reflection losses to less tha...
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...