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Advanced intermediate reflector layers for thin film silicon tandem solar cells

机译:用于薄膜硅串联太阳能电池的高级中间反射层

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Tandem solar cells based on thin film silicon benefit from an intermediate reflector layer between the top and bottom cells since it enhances the absorption in the top cell. The top cell can thus be manufactured thinner and less prone to light induced degradation. Made from a thin layer of nanocrystalline silicon oxide, the interlayer provides a second functionality since it aids in the spatial separation of local shunts occurring in both sub-cells. Recently, the reflector morphology received attention since it can provide a third function; here, a substantial difference exists between the commonly used configurations, i.e. superstrate or substrate. In the former, the thin layer of nanocrystalline silicon oxide reproduces the morphology of the underlying top cell. Its surface may thus be too rough for the growth of the bottom cell. In the latter configuration, reflectors made from a thick layer of ZnO can yield an adequate texture for the top cell, but conductive ZnO loses the effect of shunt quenching. We present our recent progress with improved intermediate reflector layers in both cell types. For silicon oxide based interlayers, we introduce a smoothing lacquer layer with self-organized openings that allow current transport. For ZnO based interlayers, we demonstrate that a treatment in oxygen plasma is capable of tuning the in-plane resistivity.
机译:基于薄膜硅的串联太阳能电池受益于顶部电池和底部电池之间的中间反射层,因为它增强了顶部电池的吸收。因此,可以将顶部电池制造得更薄并且更不易受光引起的降解。该中间层由纳米晶体氧化硅的薄层制成,提供了第二种功能,因为它有助于空间分隔两个子电池中发生的局部分流。近来,反射器形态由于能够提供第三种功能而受到关注。在此,通常使用的结构即上覆层或基层之间存在很大的差异。在前者中,纳米晶体氧化硅的薄层再现了下面的顶部电池的形态。因此其表面对于底部细胞的生长可能太粗糙。在后一种配置中,由厚ZnO层制成的反射器可为顶部电池提供足够的纹理,但导电ZnO失去了分流淬灭的作用。我们介绍了两种电池类型中改进的中间反射层的最新进展。对于基于氧化硅的中间层,我们引入了具有自组织开口的平滑漆层,该开口允许电流传输。对于基于ZnO的中间层,我们证明了在氧等离子体中进行处理能够调节面内电阻率。

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