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Geometrical optimisation of core–shell nanowire arrays for enhanced absorption in thin crystalline silicon heterojunction solar cells

机译:芯壳纳米线阵列的几何优化,用于增强薄晶体硅杂交太阳能电池的吸收

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摘要

Background: Elongated nanostructures, such as nanowires, have attracted significant attention for application in silicon-based solar cells. The high aspect ratio and characteristic radial junction configuration can lead to higher device performance, by increasing light absorption and, at the same time, improving the collection efficiency of photo-generated charge carriers. This work investigates the performance of ultra-thin solar cells characterised by nanowire arrays on a crystalline silicon bulk.Results: Proof-of-concept devices on a p-type mono-crystalline silicon wafer were manufactured and compared to flat references, showing improved absorption of light, while the final 11.8% (best-device) efficiency was hindered by sub-optimal passivation of the nanowire array. A modelling analysis of the optical performance of the proposed solar cell architecture was also carried out. Results showed that nanowires act as resonators, amplifying interference resonances and exciting additional wave-guided modes. The optimisation of the array geometrical dimensions highlighted a strong dependence of absorption on the nanowire cross section, a weaker effect of the nanowire height and good resilience for angles of incidence of light up to 60°.Conclusion: The presence of a nanowire array increases the optical performance of ultra-thin crystalline silicon solar cells in a wide range of illumination conditions, by exciting resonances inside the absorber layer. However, passivation of nanowires is critical to further improve the efficiency of such devices.
机译:背景:纳米线(如纳米线)的细长纳米结构吸引了在基于硅的太阳能电池中的应用。高纵横比和特性径向结配置可以通过增加光吸收,并同时提高光产生电荷载体的收集效率,导致更高的器件性能。该工作调查了纳米线阵列特征在晶体硅散装上的超薄太阳能电池的性能。结果:制造P型单晶硅晶片上的概念验证装置,并与平坦的参考进行比较,显示出改善的吸收光线,而最终的11.8%(最佳装置)效率受纳米线阵列的次良钝化阻碍。还执行了所提出的太阳能电池架构的光学性能的建模分析。结果表明,纳米线充当谐振器,放大干扰谐振和激发额外的波导模式。阵列几何尺寸的优化突出了纳米线横截面上吸收的强大依赖性,纳米线高度和良好的弹性效果较弱,呈光的入射角高达60°。结论:纳米线阵列的存在增加了通过在吸收层内的激发谐振,超薄晶体硅太阳能电池在广泛的照明条件下进行光学性能。然而,纳米线的钝化对于进一步提高这些装置的效率至关重要。

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