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Formation of Various Pyramidal Structures on Monocrystalline Silicon Surface and Their Influence on the Solar Cells

机译:单晶硅表面上各种金字塔结构的形成及其对太阳能电池的影响

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摘要

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 than the larger ones, and the 200 nm samples have the lowest efficiency of 10.53%.
机译:纹理化是通过在太阳能电池加工中的光捕获效果来增强单晶硅晶片的光学吸收的有用方法。在目前的研究中,通过改性的湿化学方法制造了一系列具有各种金字塔尺寸的纹理化晶片,其特征在于。结果表明,从1到10μm的金字塔尺寸的反射率几乎没有差异,这与光线跟踪模拟结果一致。然而,在几何光学限制下方的200nm样本的光捕集功能是较弱的。由1μm样品制造的太阳能电池具有比较大的金属指线的覆盖率更好地拥有的最高功率转换效率为18.17%,而200nm样品的最低效率为10.53%。

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