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Two-Dimensional Modeling of Silicon Nanowires Radial Core-Shell Solar Cells

机译:硅纳米线径向核壳太阳能电池的二维建模

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Silicon nanowires radial core-shell solar cells have recently attracted significant attention as promising candidates for low cost photovoltaic application, benefit from its strong light trapping, and short radial carrier collection distances. In order to establish optics and electricity improvement, a two-dimensional model based on Shockley-Read-Hall recombination modes has been carried out for radial core-shell junction nanowires solar cell combined with guided resonance modes of light absorption. The impact of SiNWs diameter and absorption layer thickness on device electrical performance based on a fixed nanowires height and diameter-over-periodicity were investigated under illumination. The variation in quantum efficiency indicated that the performance is limited by the mismatch between light absorption and carriers’ collection length.
机译:硅纳米线径向核壳太阳能电池作为低成本光伏应用的有前途的候选者最近受到了广泛的关注,得益于其强大的光俘获和较短的径向载流子收集距离。为了建立光学和电学改进,已经建立了基于Shockley-Read-Hall复合模式的二维模型,用于径向核-壳结纳米线太​​阳能电池并结合了光吸收的引导共振模式。在光照条件下,研究了基于固定的纳米线高度和直径超周期性的SiNWs直径和吸收层厚度对器件电性能的影响。量子效率的变化表明,性能受到光吸收与载流子收集长度之间不匹配的限制。

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