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Si Nanowires Organic Semiconductor Hybrid Heterojunction Solar Cells Toward 10% Efficiency

机译:Si纳米线有机半导体混合异质结太阳能电池效率提高10%

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摘要

High-efficiency hybrid solar cells are fabricated using a simple approach of spin coating a transparent hole transporting organic small molecule, 2,2',7,7'-Tetrakis-(N,N-di-4-methoayphenylamino)-9,9'-spirobifluorene (Spiro-OMeTAD) on silicon nanowires (SiNWs) arrays prepared by electroless chemical etching. The characteristics of the hybrid cells are investigated as a function of SiNWs length from 0.15 to 5 μm, A maximum average power conversion efficiency of 9.92% has been achieved from 0.35 μm length SiNWs cells, despite a 12% shadowing loss and the absence of antireflective coating and back surface field enhancement. It is found that enhanced aggregations in longer SiNWs limit the cell performance due to increased series resistance and higher carrier recombination in the shorter wavelength region. The effects of the Si substrate doping concentrations on the performance of the cells are also investigated. Cells with higher substrate doping concentration exhibit a significant drop in the incident photons-to-current conversion efficiency (1PCE) in the near infrared region. Nevertheless, a promising short circuit current density of 19 mA/cm~2 and IPCE peak of 57% have been achieved for a 0.9 μm length SiNWs cell fabricated on a highly doped substrate with a minority-carrier diffusion length of only 15 μm. The results suggest that such hybrid cells can potentially be realized using Si thin films instead of bulk substrates. This is promising towards realizing low-cost and high-efficiency SiNWs/organic hybrid solar cells,
机译:使用旋涂传输有机小分子,2,2',7,7'-Tetrakis-(N,N-di-4-methoayphenylamino)-9,9的有机小分子的透明空穴的简单方法来制造高效的混合太阳能电池通过化学化学刻蚀在硅纳米线(SiNWs)阵列上使用'-螺二芴(Spiro-OMeTAD)。研究了混合电池的特性,其范围为0.15至5μm的SiNWs长度,尽管长度损失为12%,并且没有抗反射性,但长度为0.35μm的SiNWs电池却实现了9.92%的最大平均功率转换效率涂层和后表面场增强。发现更长的SiNWs中增强的聚集会限制电池性能,这是由于串联电阻增加和在较短波长区域中载流子重组增加所致。还研究了硅衬底掺杂浓度对电池性能的影响。具有较高衬底掺杂浓度的电池在近红外区域的入射光子-电流转换效率(1PCE)显着下降。然而,对于在高掺杂衬底上制造的0.9μm长的SiNWs电池,其少数载流子扩散长度仅为15μm,实现了有希望的短路电流密度19 mA / cm〜2和IPCE峰值为57%。结果表明,使用Si薄膜代替体衬底可以潜在地实现这种混合电池。这对于实现低成本,高效率的SiNW /有机混合太阳能电池很有希望,

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