Black silicon (bSi) is promising for integration into silicon solar cell fabrication flow due to its excellent light trapping and low reflectance, and a continuously improving passivation. However, intensive ion bombardment during the reactive ion etching used to fabricate bSi induces surface damage that causes significant recombination. Here, we present a process optimization strategy for bSi, where surface damage is reduced and surface passivation is improved while excellent light trapping and low reflectance are maintained. We demonstrate that reduction of the capacitively coupled plasma power, during reactive ion etching at non-cryogenic temperature (-20 deg C), preserves the reflectivity below 1% and improves the effective minority car...
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...
We report on significant progress towards the application of reactive ion etched (RIE) black silicon...
A study on the formation of black silicon (b-Si) antireflection layers on crystalline Si wafers usin...
A study on the formation of black silicon (b-Si) antireflection layers on crystalline Si wafers usin...
A study on the formation of black silicon (b-Si) antireflection layers on crystalline Si wafers usin...
Nanostructuring on the surface of silicon can make high efficient solar cells possible by lowering t...
Optical properties of black silicon (b-Si) can be tailored to minimize reflection losses to less tha...
The influence of different black silicon (b-Si) front side textures prepared by inductively coupled ...
Optically black silicon nanostructures show excellent anti-reflection and light trapping properties ...
The influence of different black silicon b Si front side textures prepared by inductively coupled ...
The influence of different black silicon b Si front side textures prepared by inductively coupled ...
AbstractOptically black silicon nanostructures show excellent anti-reflection and light trapping pro...
The influence of different black silicon b Si front side textures prepared by inductively coupled ...
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...
We report on significant progress towards the application of reactive ion etched (RIE) black silicon...
A study on the formation of black silicon (b-Si) antireflection layers on crystalline Si wafers usin...
A study on the formation of black silicon (b-Si) antireflection layers on crystalline Si wafers usin...
A study on the formation of black silicon (b-Si) antireflection layers on crystalline Si wafers usin...
Nanostructuring on the surface of silicon can make high efficient solar cells possible by lowering t...
Optical properties of black silicon (b-Si) can be tailored to minimize reflection losses to less tha...
The influence of different black silicon (b-Si) front side textures prepared by inductively coupled ...
Optically black silicon nanostructures show excellent anti-reflection and light trapping properties ...
The influence of different black silicon b Si front side textures prepared by inductively coupled ...
The influence of different black silicon b Si front side textures prepared by inductively coupled ...
AbstractOptically black silicon nanostructures show excellent anti-reflection and light trapping pro...
The influence of different black silicon b Si front side textures prepared by inductively coupled ...
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...