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Subwavelength nanostructures integrated with polymer-packaged iii-v solar cells for omnidirectional, broad-spectrum improvement of photovoltaic performance

机译:与聚合物封装的iii-v太阳能电池集成的亚波长纳米结构,可全方位,广泛地改善光伏性能

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Reduction in surface and interface reflectance via the integration of subwavelength nanostructures in flexible polymer packaging material combined with incorporation of dielectric nanoislands into a conventional two-layer antireflection coating has been demonstrated, analyzed and optimized. Transmittance measurements of moth-eye textured polymer packaging sheets with different tapered pillar heights fabricated by reactive-ion etching and nanosphere lithography provide insights into the choice of the optimum nanostructure dimensions. Detailed computational modeling and simulations elucidate the physical nature of the antireflection performance of dielectric nanoisland structures integrated with a commercial two-layer antireflection coating, and provide guidance for design of the nanoisland structure for optimum antireflection performance. Measurements show that the integration of appropriately designed nanostructures in both polymer packaging material and conventional antireflection layers enables substantial increases in external quantum efficiency (E.Q.E.) and short-circuit current density (J(sc)) over a broad range of incident angles, compared to structures with conventional bilayer antireflection coatings and unpatterned polymer packaging sheets. A 1.1x increase in J(sc), derived directly from E.Q.E. measurements, at normal incidence, increasing to 1.67x improvement at 80 degrees angle of incidence, suggests that such an approach is promising for a variety of photovoltaic applications, particularly those where solar tracking is not feasible or practical. Copyright (C) 2014 John Wiley & Sons, Ltd.
机译:已经证明,分析和优化了通过在柔性聚合物包装材料中整合亚波长纳米结构以及将电介质纳米岛结合到常规两层抗反射涂层中来降低表面和界面反射率的方法。通过反应离子刻蚀和纳米球光刻技术制造的具有不同锥形柱高的蛾眼纹理聚合物包装片材的透射率测量,为选择最佳纳米结构尺寸提供了见识。详细的计算建模和仿真阐明了与商用两层抗反射涂层集成的电介质纳米岛结构的抗反射性能的物理性质,并为纳米岛结构的最佳抗反射性能设计提供了指导。测量表明,与聚合物包装材料和常规抗反射层相集成的适当设计的纳米结构,与大范围的入射角相比,可以显着提高外部量子效率(EQE)和短路电流密度(J(sc))。具有常规双层抗反射涂层和无图案聚合物包装片的结构。直接从E.Q.E.得到的J(sc)增加1.1倍。在法向入射下进行的测量可以将入射角在80度时提高到1.67倍,这表明这种方法对于各种光伏应用(特别是在太阳能跟踪不可行或不实用的光伏应用中)很有希望。版权所有(C)2014 John Wiley&Sons,Ltd.

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