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Light-trapping improvement of limited-quality silicon wafers for silicon heterojunction solar cell applications

机译:用于硅异质结太阳能电池应用的有限优质硅晶片的轻捕集改进

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Laser-based surface texturing treatments have been investigated as a promising option for innovative low-cost concepts to improve the light absorption of silicon heterojunction solar cells manufactured from unconventional silicon wafers. A great advantage of using a laser as a processing tool is its high precision, which lead to selected and well-controlled morphologies. This is a particularly interesting feature for multicrystalline silicon wafers, where the large number of grain boundaries makes it difficult to obtain high light-trapping morphologies by other methods. The investigations described in this work include testing different patterns on the wafer surface in order to define the best morphology to improve the light absorption. A significant decrease in reflectance (R<;9%) has been achieved by direct-laser texturization and has been compared with acid-chemical etching with average reflectance above 20%. This result suggests the enormous potential of direct laser texturization for this type of wafers, without chemical residues and its easy incorporation to the manufacturing of low-cost silicon heterojunction solar cells.
机译:已经研究了基于激光的表面纹理化处理作为创新的低成本概念的有希望的选择,以改善由非传统硅晶片制造的硅杂交太阳能电池的光吸收。使用激光作为加工工具的一个很大的优点是其高精度,这导致选择和良好控制的形态。这是多晶硅硅晶片的特别有趣的特征,其中大量的晶界使得难以通过其他方法获得高光捕集形态。本工作中描述的调查包括在晶片表面上测试不同的图案,以便定义最佳形态以改善光吸收。通过直激光纹理化实现反射率(R <4%)的显着降低,并与酸化学蚀刻进行了比较,平均反射率高于20%。该结果表明,这种类型的晶片直接激光纹理化的巨大潜力,没有化学残留物,并且其容易地结合到低成本硅杂结太阳能电池的制造。

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