AbstractReflection of the incident photons by the silicon surface is a major source of losses during photovoltaic conversion. However, these losses can be minimized by depositing an antireflection layer, usually silicon nitride SiNx: H, combined with an appropriate texturing. This layer should also provide a good passivation where a real dilemma can be arising. In contrast the surface passivation gets better with increasing Si content (large optical index for n > 2.3) and the minimum reflectivity was found for small optical index. To achieve this, one first approach consists to use a double antireflective layer with two materials of different refractive index n. Among the materials that are appropriate from the standpoint of physics and tec...
A study on the formation of black silicon (b-Si) antireflection layers on crystalline Si wafers usin...
This paper presents an investigation into the use of thin films of silicon oxide and silicon nitride...
In this paper we study the surface reflection of a photovoltaic module. The antireflection layer bas...
ABSRTACT: To increase the photon transmission in solar cells based on multicrystalline silicon, two ...
In this study a single anti-reflective layer like a double anti-reflective coating of silicon nitrid...
We present results of numerical simulation of optimized porous silicon (PS) multilayers used as anti...
AbstractPlasma-deposited silicon nitride (a-SiNx:H, or briefly, SiNx) is currently the state-of-the-...
Minimizing the photon losses by depositing an anti-reflection layer can increase the conversion effi...
This paper focuses on anti-reflective coatings on monocrystalline silicon solar cells and the impact...
International audienceIn order to enhance photon transmission into multicrystalline silicon solar ce...
For thin silicon solar cells, standard pyramidal textures cannot be used as antireflection structure...
We presented a method to use SiO2/SiNx:H double layer antireflection coatings (DARC) on acid texture...
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...
The design and optimization of a nanostructured antireflective coatings for Si solar cells were perf...
A study on the formation of black silicon (b-Si) antireflection layers on crystalline Si wafers usin...
This paper presents an investigation into the use of thin films of silicon oxide and silicon nitride...
In this paper we study the surface reflection of a photovoltaic module. The antireflection layer bas...
ABSRTACT: To increase the photon transmission in solar cells based on multicrystalline silicon, two ...
In this study a single anti-reflective layer like a double anti-reflective coating of silicon nitrid...
We present results of numerical simulation of optimized porous silicon (PS) multilayers used as anti...
AbstractPlasma-deposited silicon nitride (a-SiNx:H, or briefly, SiNx) is currently the state-of-the-...
Minimizing the photon losses by depositing an anti-reflection layer can increase the conversion effi...
This paper focuses on anti-reflective coatings on monocrystalline silicon solar cells and the impact...
International audienceIn order to enhance photon transmission into multicrystalline silicon solar ce...
For thin silicon solar cells, standard pyramidal textures cannot be used as antireflection structure...
We presented a method to use SiO2/SiNx:H double layer antireflection coatings (DARC) on acid texture...
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...
The design and optimization of a nanostructured antireflective coatings for Si solar cells were perf...
A study on the formation of black silicon (b-Si) antireflection layers on crystalline Si wafers usin...
This paper presents an investigation into the use of thin films of silicon oxide and silicon nitride...
In this paper we study the surface reflection of a photovoltaic module. The antireflection layer bas...