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Atmospheric pressure dry texturing enabling 20 conversion efficiency on multicrystalline silicon PERC solar cells

机译:大气压干纹理,使多晶硅硅Perc太阳能电池的转换效率高20%

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In this paper, we report significant progress in development and integration of a plasma-less atmospheric pressure dry texturing (ADE) process, performed on multicrystalline silicon (mc-Si) wafers, into high efficiency PERC solar cell architectures using industrially applied process steps. The mechanism of forming sub-micron features on monocrystalline and multicrystalline silicon wafers with commercial grade fluorine gas (F_2) is briefly presented. Low weighted surface reflection (R_(w,min) < 10%) is achieved for mc-Si substrates regardless of the wafer sawing method. Mc-Si PERC solar cells with average conversion efficiencies of 20% are fabricated in the industrial pilot line of Hanwha Q-Cells in Thalheim. A detailed characterization of ADE-textured solar cells suggest that an enhancement in conversion efficiency of up to +0.8% absolute is possible in comparison to the reference-textured solar cells by narrowing the distribution of reflectivity in the textured wafer surface.
机译:在本文中,我们报告了在多晶硅(MC-Si)晶片上进行的等离子体 - 诸多大气压干燥纹理(ADE)过程的显着进展和集成,以工业上施加的工艺步骤进入高效率的PERC太阳能电池架构。简要介绍了用商业级氟气(F_2)的单晶和多晶硅晶片上形成亚微米特征的机制。无论晶片锯切方法如何,对于MC-Si基板实现低加权表面反射(R_(W,min)<10%)。 MC-SI PERC太阳能电池平均转化效率为20%,在Thalheim的Hanwha Q细胞工业试验线中制造。 ade纹理太阳能电池的详细表征表明,通过缩小纹理晶片表面中的反射率的分布,可以与参考纹理太阳能电池相比,可以增强最高+ 0.8%的转换效率。

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