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Light Trapping Enhancement in a Thin Film with 2D Conformal Periodic Hexagonal Arrays

机译:具有二维共形周期六边形阵列的薄膜中的光陷阱增强

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摘要

Applying a periodic light trapping array is an effective method to improve the optical properties in thin-film solar cells. In this work, we experimentally and theoretically investigate the light trapping properties of two-dimensional periodic hexagonal arrays in the framework of a conformal amorphous silicon film. Compared with the planar reference, the double-sided conformal periodic structures with all feature periodicities of sub-wavelength (300 nm), mid-wavelength (640 nm), and infrared wavelength (2300 nm) show significant broadband absorption enhancements under wide angles. The films with an optimum periodicity of 300 nm exhibit outstanding antireflection and excellent trade-off between light scattering performance and parasitic absorption loss. The average absorption of the optimum structure with a thickness of 160 nm is 64.8 %, which is much larger than the planar counterpart of 38.5 %. The methodology applied in this work can be generalized to rational design of other types of high-performance thin-film photovoltaic devices based on a broad range of materials.Electronic supplementary materialThe online version of this article (doi:10.1186/s11671-015-0988-y) contains supplementary material, which is available to authorized users.
机译:应用周期性的光捕获阵列是改善薄膜太阳能电池的光学性能的有效方法。在这项工作中,我们从实验和理论上研究了二维周期六边形阵列在共形非晶硅膜框架内的光捕获特性。与平面参考相比,双面共形周期性结构具有亚波长(300 nm),中波长(640 nm)和红外波长(2300 nm)的所有周期性,在广角下显示出明显的宽带吸收增强。最佳周期性为300 nm的薄膜表现出出色的抗反射性和光散射性能与寄生吸收损耗之间的出色折衷。厚度为160 nm的最佳结构的平均吸收率为64.8%,远远大于平面结构的38.5%。这项工作中使用的方法学可以推广到基于多种材料的其他类型的高性能薄膜光伏器件的合理设计。电子补充材料本文的在线版本(doi:10.1186 / s11671-015-0988 -y)包含补充材料,授权用户可以使用。

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