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首页> 外文期刊>Journal of Semiconductors >Interfacial engineering of printable bottom back metal electrodes for full-solution processed flexible organic solar cells
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Interfacial engineering of printable bottom back metal electrodes for full-solution processed flexible organic solar cells

机译:全溶液加工柔性有机太阳能电池的可打印底层金属电极的界面工程

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摘要

Printing of metal bottom back electrodes of flexible organic solar cells (FOSCs) at low temperature is of great significance to realize the full-solution fabrication technology. However, this has been difficult to achieve because often the interfacial properties of those printed electrodes, including conductivity, roughness, work function, optical and mechanical flexibility, cannot meet the device requirement at the same time. In this work, we fabricate printed Ag and Cu bottom back cathodes by a low-temperature solution technique named polymer-assisted metal deposition (PAMD) on flexible PET substrates. Branched polyethylenimine (PEI) and ZnO thin films are used as the interface modification layers (IMLs) of these cathodes. Detailed experimental studies on the electrical, mechanical, and morphological properties, and simulation study on the optical properties of these IMLs are carried out to understand and optimize the interface of printed cathodes. We demonstrate that the highest power conversion efficiency over 3.0% can be achieved from a full-solution processed OFSC with the device structure being PAMDAg/ PEI/P3HT:PC61BM/PH1000. This device also acquires remarkable stability upon repeating bending tests.
机译:在低温下印刷柔性有机太阳能电池(FOSC)的金属底电极具有重要意义,以实现全解决方案制造技术。然而,这一直难以实现,因为通常是那些印刷电极的界面性质,包括导电,粗糙度,功函数,光学和机械柔性,同时不能满足所述器件要求。在这项工作中,我们通过在柔性PET基板上的低温溶液技术制造印刷的AG和Cu底部背部阴极(PAMD)。支链聚乙烯(PEI)和ZnO薄膜用作这些阴极的界面改性层(IML)。对这些IML的光学性质的电气,机械和形态学性能和模拟研究进行了详细的实验研究,以了解和优化印刷阴极的界面。我们证明,在使用PAMDAG / PEI / P3HT:PC61BM / PH100​​0的设备结构中,可以从3.0%的最高功率转换效率获得3.0%以上的最高功率转换效率。该装置还在重复弯曲测试时获得显着的稳定性。

著录项

  • 来源
    《Journal of Semiconductors》 |2018年第1期|共9页
  • 作者单位

    Nanotechnology Center Institute of Textiles and Clothing the Hong Kong Polytechnic University Hong Kong SAR China;

    Nanotechnology Center Institute of Textiles and Clothing the Hong Kong Polytechnic University Hong Kong SAR China;

    Nanotechnology Center Institute of Textiles and Clothing the Hong Kong Polytechnic University Hong Kong SAR China;

    Nanotechnology Center Institute of Textiles and Clothing the Hong Kong Polytechnic University Hong Kong SAR China;

    Nanotechnology Center Institute of Textiles and Clothing the Hong Kong Polytechnic University Hong Kong SAR China;

    Nanotechnology Center Institute of Textiles and Clothing the Hong Kong Polytechnic University Hong Kong SAR China;

    State Key Laboratory of Modern Optical Instrumentation Zhejiang University Hangzhou 310027 China;

    Department of Applied Physics the Hong Kong Polytechnic University Hong Kong SAR China;

    Department of Applied Physics the Hong Kong Polytechnic University Hong Kong SAR China;

    Nanotechnology Center Institute of Textiles and Clothing the Hong Kong Polytechnic University Hong Kong SAR China;

    Department of Applied Physics the Hong Kong Polytechnic University Hong Kong SAR China;

    Nanotechnology Center Institute of Textiles and Clothing the Hong Kong Polytechnic University Hong Kong SAR China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

    polymer-assisted metal deposition; full-solution processed; flexible organic solar cells; printed electrodes; interface modification layers;

    机译:聚合物辅助金属沉积;全溶液加工;柔性有机太阳能电池;印刷电极;接口修改层;

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