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硅/有机异质结单纳米线太阳能电池的光电研究。

Opto-electric investigation for Si/organic heterojunction single-nanowire solar cells.

作者信息

Yang Zhenhai, Liu Zhaolang, Sheng Jiang, Guo Wei, Zeng Yuheng, Gao Pingqi, Ye Jichun

机构信息

Ningbo Institute of Material Technology and Engineering, Chinese Academy of Sciences, Ningbo, 315201, China.

School of Materials Science and Engineering, Shanghai University, Shanghai, 200072, China.

出版信息

Sci Rep. 2017 Nov 6;7(1):14575. doi: 10.1038/s41598-017-15300-0.

Abstract

Recently, silicon single nanowire solar cells (SNSCs) serving as the sustainable self-power sources have been integrated into optoelectronic nanodevices under the driver of technology and economy. However, conventional SNSC cannot provide the minimum energy consumption for the operation of nanodevices due to its low power conversion efficiency (PCE). Here, we propose an innovative approach to combine the n-type silicon nanowires (SiNWs) with p-type poly(3,4-ethylthiophene):poly(styrenesulfonate) (PEDOT:PSS) to form the p n heterojunction, which shows superior opto-electric performances. Besides, PEDOT:PSS also acts as a natural anti-reflection coating (ARC) with an excellent light-trapping capability, especially in the short-wavelength range. Importantly, the photovoltaic performances of Si/PEDOT:PSS SNSC can be well maintained even in large surface recombination velocity, due to the efficient field-effect passivation of PEDOT:PSS. The minority carrier concentration at outer surface of shallow p n heterojunction is greatly reduced by the electric field, drastically suppressing the surface recombination compared to the conventional p-i-n homojunction SNSC. Furthermore, larger junction area of p n heterojunction facilitates the separation of photo-generated charge carriers. These results demonstrate that the Si/PEDOT:PSS SNSC is a promising alternative for micro power application.

摘要

近年来,作为可持续自供电源的硅单纳米线太阳能电池(SNSCs)在技术和经济的推动下已被集成到光电子纳米器件中。然而,传统的SNSC由于其低功率转换效率(PCE),无法为纳米器件的运行提供最低能量消耗。在此,我们提出一种创新方法,将n型硅纳米线(SiNWs)与p型聚(3,4 - 乙撑噻吩):聚(苯乙烯磺酸盐)(PEDOT:PSS)相结合,形成p - n异质结,该异质结展现出卓越的光电性能。此外,PEDOT:PSS还作为一种具有出色光捕获能力的天然抗反射涂层(ARC),特别是在短波长范围内。重要的是,由于PEDOT:PSS的高效场效应钝化作用,即使在大表面复合速度下,Si/PEDOT:PSS SNSC的光伏性能也能得到良好维持。与传统的p - i - n同质结SNSC相比,浅p - n异质结外表面的少数载流子浓度因电场而大幅降低,从而极大地抑制了表面复合。此外,p - n异质结更大的结面积有助于光生电荷载流子的分离。这些结果表明,Si/PEDOT:PSS SNSC是微功率应用的一个有前途的替代方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/168a/5674000/4f8ed57ee08f/41598_2017_15300_Fig1_HTML.jpg

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