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Simultaneous Improvement of Efficiency and Stability of Non-Fullerene-Based Organic Solar Cells Via Sequential Deposition of Single Donor and Binary Acceptor

机译:通过顺序沉积单一供体和二元受体同时改善非富勒烯基有机太阳能电池的效率和稳定性

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摘要

Non-fullerene acceptor (NFA)-based organic solar cells often exhibit significant cell degradation in power conversion efficiency (PCE) in the early stages of operation, called “burn-in.” Generally, to fabricate NFA-based solar cells, binary blend solution deposition (binary BSD) of a conjugated polymer and an NFA is utilized. Herein, the reasons for burn-in are investigated by aging organic photovoltaic cells with independent control of temperature and light. The results reveal that burn-in is mainly due to a rapid increase in the interfacial resistance (R_(int)) rather than photo-oxidation of the components or oxidation of the electrode. This R_(int) is effectively suppressed by constructing a ternary photoactive layer through the sequential deposition of a polymer solution and a binary acceptor solution consisting of an NFA and a fullerene acceptor (ternary sequential deposition [ternary SqD]). Under the illumination of 1 sun and thermal annealing at 80 °C for 500 h, the binary BSD exhibits a reduction in efficiency of 63% and 59%, respectively, whereas the ternary SqD demonstrates a reduction of only 32% and 35%, respectively. In addition, the ternary SqD improves the PCE on using fullerene acceptors to enhance light harvesting at short wavelengths.
机译:基于富富勒烯受体(NFA)的有机太阳能电池通常在操作的早期阶段的电力转换效率(PCE)中表现出显着的细胞劣化,称为“烧伤”。通常,为了制造基于NFA的太阳能电池,使用共轭聚合物和NFA的二元共混溶液沉积(二元BSD)。在此,通过具有独立控制温度和光的有机光伏电池来研究燃烧的原因。结果表明,烧伤主要是由于界面抗性的快速增加(R_(int))而不是电极的组分或氧化的光氧化。通过通过连续沉积聚合物溶液和由NFA和富勒烯受体组成的二元受体溶液(三元顺序沉积[三元SQD])来有效地抑制该R_(int)。在80℃下的1阳光和热退火的照明下,二元BSD分别表现出63%和59%的效率降低,而三元SQD分别减少了32%和35% 。此外,三元SQD使用富勒烯受体改善了PCE,以增强短波长的光收获。

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  • 来源
    《Solar RRL》 |2021年第10期|2100592.1-2100592.9|共9页
  • 作者单位

    Department of Chemistry and Nanoscience Ewha Womans University Seoul 03760 Korea;

    Department of Chemistry and Nanoscience Ewha Womans University Seoul 03760 Korea;

    Department of Chemistry and Nanoscience Ewha Womans University Seoul 03760 Korea;

    Department of Chemistry and Nanoscience Ewha Womans University Seoul 03760 Korea;

    Department of Chemistry and Nanoscience Ewha Womans University Seoul 03760 Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    burn-in; non-fullerene acceptors; organic solar cells; sequential deposition; stability;

    机译:烧伤;非富富勒因受体;有机太阳能电池;顺序沉积;稳定;

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