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Relationship between the cell thickness and the optimum period of textured back reflectors in thin-film microcrystalline silicon solar cells

机译:薄膜微晶硅太阳能电池的电池厚度与带纹理的背反射器的最佳周期之间的关系

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摘要

Periodically textured back reflectors with hexagonal dimple arrays are applied to thin-film microcrystalline silicon (μc-Si:H) solar cells. When the textures have a moderate aspect ratio, the optimum period for obtaining a high short circuit current density (JSC) is found to be equal to or slightly larger than the cell thickness. If the cell thickness exceeds the texture period, the cell surface tends to be flattened and texture-induced defects are generated, which constrain the improvement in JSC. Based on these findings, we have fabricated optimized μc-Si:H cells achieving a high efficiency exceeding 10% and a JSC of 30 mA/cm2.
机译:具有六角形凹坑阵列的定期纹理化背反射器应用于薄膜微晶硅(μc-Si:H)太阳能电池。当纹理具有适当的纵横比时,发现获得高短路电流密度(J SC )的最佳时间等于或略大于单元厚度。如果泡孔厚度超过纹理周期,则泡孔表面趋于变平并产生由纹理引起的缺陷,从而限制了J SC 的改善。基于这些发现,我们制造了优化的μc-Si:H电池,其效率超过10%,J SC 达到30μmA/ cm 2

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