Texturization is a useful method to enhance the optical absorption of monocrystalline silicon wafers by light-trapping effect in solar cell processing. In present study, a series of textured wafers with various pyramid sizes ranging from 200 nm to 10 μm were fabricated by modified wet-chemical method and characterized. The results show that there is little difference in the reflectance with the pyramid sizes from 1 to 10 μm, which is consistent with the ray-tracing simulation results. However, the light-trapping function of the 200 nm sample below the geometrical optics limit is much weaker. The solar cells fabricated from the 1 μm samples own the highest power conversion efficiency of 18.17% due to a better coverage of metal finger lines t...
In this study, we present a new light absorption enhancement method for p-i-n thin film silicon sola...
In this study, we present a new light absorption enhancement method for p-i-n thin film silicon sola...
In this study, we present a new light absorption enhancement method for p-i-n thin film silicon sola...
We investigate the light trapping in Si wafers that are textured with conventional random pyramids o...
An inverted pyramidal grating texture is known to reduce both surface reflection and to promote ligh...
Most industrial monocrystalline silicon wafer (mono-Si) solar cells are metallised by screen printin...
We investigate the light trapping in Si wafers that are textured with conventional random pyramids o...
Surface texture promotes enhanced light absorption in Si solar cells. The quality of lower cost mult...
In order to analyze the effects of various sizes of pyramid structure on solar cell characteristics,...
The most effective way to improve the optical properties of silicon-based solar cells is to form the...
Light trapping ability of a solar cell can be improved by the application of various texturing schem...
Smaller pyramid sizes for Silicon solar cell front side textures attract more and more interest. At ...
Silicon heterojunction solar cells with pyramidal textured surfaces created by different etching con...
A surface texture enhances the capacity of a solar cell to absorb incident radiation. In high effici...
In this study, we present a new light absorption enhancement method for p-i-n thin film silicon sola...
In this study, we present a new light absorption enhancement method for p-i-n thin film silicon sola...
In this study, we present a new light absorption enhancement method for p-i-n thin film silicon sola...
In this study, we present a new light absorption enhancement method for p-i-n thin film silicon sola...
We investigate the light trapping in Si wafers that are textured with conventional random pyramids o...
An inverted pyramidal grating texture is known to reduce both surface reflection and to promote ligh...
Most industrial monocrystalline silicon wafer (mono-Si) solar cells are metallised by screen printin...
We investigate the light trapping in Si wafers that are textured with conventional random pyramids o...
Surface texture promotes enhanced light absorption in Si solar cells. The quality of lower cost mult...
In order to analyze the effects of various sizes of pyramid structure on solar cell characteristics,...
The most effective way to improve the optical properties of silicon-based solar cells is to form the...
Light trapping ability of a solar cell can be improved by the application of various texturing schem...
Smaller pyramid sizes for Silicon solar cell front side textures attract more and more interest. At ...
Silicon heterojunction solar cells with pyramidal textured surfaces created by different etching con...
A surface texture enhances the capacity of a solar cell to absorb incident radiation. In high effici...
In this study, we present a new light absorption enhancement method for p-i-n thin film silicon sola...
In this study, we present a new light absorption enhancement method for p-i-n thin film silicon sola...
In this study, we present a new light absorption enhancement method for p-i-n thin film silicon sola...
In this study, we present a new light absorption enhancement method for p-i-n thin film silicon sola...