For thin silicon solar cells, standard pyramidal textures cannot be used as antireflection structures due to their thicknesses of several micrometres. In this paper, we investigate two alternative front side antireflection surfaces, which in combination with diffractive rear side structures could lead to low surface reflectance and advanced light trapping: firstly, planar multi-layer antireflection coatings, optimized using experimentally determined refractive indices, have been produced. The resulting hemispheric reflectance weighted with the AM1.5g spectrum (280 nm to 1000 nm) for two and three optimized planar layers were 3.67 % and 3.52 %, respectively, slightly higher than for a sample with inverted pyramids with 3.09 %. Secondly, blac...
In this paper, we presented a possible front surface optical enhancement of Si solar cell by optimiz...
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...
Backscattering from nanostructured surfaces greatly diminishes the efficacy of light trapping solar ...
Silicon solar cells require light trapping structures, because silicon as indirect semiconductor onl...
Reflectance, reduction, and light trapping enhancement are essential to maximize the absorption of s...
Crystalline silicon solar cells absorb light in the near infrared only weakly. To utilize also the i...
This paper focuses on anti-reflective coatings on monocrystalline silicon solar cells and the impact...
In this thesis, light trapping behaviour in silicon solar cells with textured front surfaces and rea...
ABSTRACT: Enhancing the light absorption in ultrathin-film silicon solar cells is important for impr...
Abstract This paper shows an antireflection coating design skill for utilization the thin-film silic...
The photovoltaic solar energy industry has experienced substantial growth over the last few years an...
The low conversion efficiency of thin-film silicon solar cells currently prevents them from competin...
The effects of different anti-reflective structures on the photovoltaic performance of the silicon s...
Highly efficient anti‐reflection textures for solar cells that allow a fabrication using a two‐step ...
In this paper, we presented a possible front surface optical enhancement of Si solar cell by optimiz...
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...
Backscattering from nanostructured surfaces greatly diminishes the efficacy of light trapping solar ...
Silicon solar cells require light trapping structures, because silicon as indirect semiconductor onl...
Reflectance, reduction, and light trapping enhancement are essential to maximize the absorption of s...
Crystalline silicon solar cells absorb light in the near infrared only weakly. To utilize also the i...
This paper focuses on anti-reflective coatings on monocrystalline silicon solar cells and the impact...
In this thesis, light trapping behaviour in silicon solar cells with textured front surfaces and rea...
ABSTRACT: Enhancing the light absorption in ultrathin-film silicon solar cells is important for impr...
Abstract This paper shows an antireflection coating design skill for utilization the thin-film silic...
The photovoltaic solar energy industry has experienced substantial growth over the last few years an...
The low conversion efficiency of thin-film silicon solar cells currently prevents them from competin...
The effects of different anti-reflective structures on the photovoltaic performance of the silicon s...
Highly efficient anti‐reflection textures for solar cells that allow a fabrication using a two‐step ...
In this paper, we presented a possible front surface optical enhancement of Si solar cell by optimiz...
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...