高效杂化有机/硅纳米孔异质结太阳能电池

S. Thiyagu, Chen-Chih Hsueh, Chien-Ting Liu, Hong-Jhang Syu, Song-ting Yang, Ching-Fuh Lin
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引用次数: 1

摘要

本文研究了一种在n型硅片上制备高密度硅纳米孔(SiNH)阵列的方法。在波长300 ~ 1100nm范围内,无论入射角度如何,sinh的反射率都很低,优于Si纳米线。SiNH阵列在纳米结构之间具有很强的光捕获效应,导致高吸收。我们实验证明了高效的有机-无机混合太阳能电池,硅/PEDOT:PSS与硅纳米孔。这种Si/PEDOT:PSS混合太阳能电池的Jsc高达36.80 mA/cm2, Voc为0.52V, FF为66.50%,功率转换效率(PCE)为12.72%。SiNH阵列产生较大的表面积体积比,因此可以通过形成核心-鞘层p-n结实现高效的光收集和电荷收集。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High efficiency hybrid organic/silicon-nanohole heterojunction solar cells
In this work, a simple method of solution process to fabricate high density Silicon nanohole (SiNH) arrays on n-type wafer is experimented. SiNHs exhibit very low reflectance from range of wavelength 300 to 1100 nm irrespective of the angle of incidence, better than Si nanowires. The SiNH arrays have a strong light trapping effect between the nanostructures causes high absorption. We experimentally demonstrate high-efficiency organic-inorganic hybrid solar cells, Si/PEDOT:PSS with silicon nanoholes. Such Si/PEDOT:PSS hybrid solar cells exhibit high Jsc of 36.80 mA/cm2, Voc of 0.52V, FF of 66.50%, and thus power conversion efficiency (PCE) of 12.72%. SiNH arrays produce a large surface-area-to-volume ratio, hence allowing efficient light harvesting and charge collection via the formation of a core-sheath p-n junction.
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