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Light trapping enhancement in ordered and disordered silicon nanowire based solar cells

机译:有序和无序硅纳米线基太阳能电池中光捕获的增强

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In this work we introduce the main principles behind efficient light trapping in silicon nanowire structures. The ultimate performance of vertical periodic crystalline silicon nanowire arrays has been determined and optimized values have been presented as a function of the nanowire length. The further improvement of the performance has been demonstrated using dual-diameter periodic silicon nanowire arrays where the already optimized nanowire structure has been used as the starting point. The improved efficiency of this densely packed structure has been compared with the reference flat films in order to evaluate theoretical improvement of the light trapping efficiency. In the last part of our work we present the efficient light trapping inside amorphous silicon nanowire based radial junction solar cells fabricated using plasma enhanced vapor-liquid-solid process.
机译:在这项工作中,我们介绍了硅纳米线结构中有效光捕获背后的主要原理。已经确定了垂直周期性晶体硅纳米线阵列的最终性能,并根据纳米线长度给出了优化值。使用双直径周期性硅纳米线阵列已经证明了性能的进一步提高,其中已经优化的纳米线结构已用作起点。为了评估光捕获效率的理论上的提高,已将该致密堆积结构的改进效率与参考平面膜进行了比较。在我们工作的最后一部分,我们介绍了使用等离子增强的气液固过程制造的基于非晶硅纳米线的径向结太阳能电池内部的有效光阱。

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