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Axially connected nanowire core-shell p-n junctions: a composite structure for high-efficiency solar cells

机译:轴向连接的纳米线核-壳p-n结:用于高效太阳能电池的复合结构

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摘要

A composite nanostructure for high-efficiency solar cells that axially connects nanowire core-shell p-n junctions is proposed. By axially connecting the p-n junctions in one nanowire, the solar spectrum is separated and absorbed in the top and bottom cells with respect to the wavelength. The unique structure of nanowire p-n junctions enables substantial light absorption along the nanowire and efficient radial carrier separation and collection. A coupled three-dimensional optoelectronic simulation is used to evaluate the performance of the structure. With an excellent current matching, a promising efficiency of 19.9% can be achieved at a low filling ratio of 0.283 (the density of the nanowire array), which is much higher than the tandem axial p-n junctions.
机译:提出了一种轴向连接纳米线核-壳p-n结的高效太阳能电池复合纳米结构。通过轴向连接一根纳米线中的p-n结,太阳光谱在顶部和底部单元中相对于波长被分离和吸收。纳米线p-n结的独特结构使沿纳米线的光吸收能力强,并且径向载流子有效分离和收集。耦合的三维光电模拟用于评估结构的性能。通过出色的电流匹配,在0.283(纳米线阵列的密度)的低填充率下,可以实现19.9%的有希望的效率,该填充率远高于串联轴向p-n结。

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