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首页> 外文期刊>Advanced energy materials >Semi-Transparent Tandem Organic Solar Cells with 90% Internal Quantum Efficiency
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Semi-Transparent Tandem Organic Solar Cells with 90% Internal Quantum Efficiency

机译:具有90%内部量子效率的半透明串联有机太阳能电池

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摘要

Semi-transparent (ST) organic solar cells with potential application as power generating windows are studied. The main challenge is to find proper transparent electrodes with desired electrical and optical properties. In this work, this is addressed by employing an amphiphilic conjugated polymer PFPA-1 modified ITO coated glass substrate as the ohmic electron-collecting cathode and PEDOT:PSS PH1000 as the hole-collecting anode. For active layers based on different donor polymers, considerably lower reflection and parasitic absorption are found in the ST solar cells as compared to solar cells in the standard geometry with an ITO/PEDOT:PSS anode and a LiF/Al cathode. The ST solar cells have remarkably high internal quantum efficiency at short circuit condition (∼90%) and high transmittance (∼50%). Hence, efficient ST tandem solar cells with enhanced power conversion efficiency (PCE) compared to a single ST solar cell can be constructed by connecting the stacked two ST sub-cells in parallel. The total loss of photons by reflection, parasitic absorption and transmission in the ST tandem solar cell can be smaller than the loss in a standard solar cell based on the same active materials. We demonstrate this by stacking five separately prepared ST cells on top of each other, to obtain a higher photocurrent than in an optimized standard solar cell.
机译:研究了具有应用潜力的半透明(ST)有机太阳能电池作为发电窗口。主要的挑战是找到具有所需电学和光学特性的合适的透明电极。在这项工作中,这是通过采用两亲共轭聚合物PFPA-1改性的ITO涂层玻璃基板作为欧姆电子收集阴极,并使用PEDOT:PSS PH100​​0作为空穴收集阳极来解决的。对于基于不同施主聚合物的活性层,与具有ITO / PEDOT:PSS阳极和LiF / Al阴极的标准几何形状的太阳能电池相比,ST太阳能电池的反射和寄生吸收低得多。 ST太阳能电池在短路条件下(〜90%)具有非常高的内部量子效率,在透射率下(〜50%)具有很高的内部量子效率。因此,可以通过并联连接堆叠的两个ST子电池来构造与单个ST太阳能电池相比具有增强的功率转换效率(PCE)的高效ST串联太阳能电池。 ST串联太阳能电池中由于反射,寄生吸收和透射而导致的光子总损失可能小于基于相同活性材料的标准太阳能电池中的损失。我们通过在彼此顶部堆叠五个单独准备的ST电池来证明这一点,以获得比优化标准太阳能电池更高的光电流。

著录项

  • 来源
    《Advanced energy materials 》 |2012年第12期| 1-10| 共10页
  • 作者单位

    Biomolecular and Organic Electronics IFM and Center of Organic Electronics LinkÖping University SE-581 83 LinkÖping Sweden;

    Polymer Technology Department of Chemical and Biological Engineering Chalmers University of Technology SE-412 96 GÖteborg Sweden;

    Biomolecular and Organic Electronics IFM and Center of Organic Electronics LinkÖping University SE-581 83 LinkÖping Sweden;

    Biomolecular and Organic Electronics IFM and Center of Organic Electronics LinkÖping University SE-581 83 LinkÖping Sweden;

    Biomolecular and Organic Electronics IFM and Center of Organic Electronics LinkÖping University SE-581 83 LinkÖping Sweden;

    Biomolecular and Organic Electronics IFM and Center of Organic Electronics LinkÖping University SE-581 83 LinkÖping Sweden;

    Polymer Technology Department of Chemical and Biological Engineering Chalmers University of Technology SE-412 96 GÖteborg Sweden;

    Biomolecular and Organic Electronics IFM and Center of Organic Electronics LinkÖping University SE-581 83 LinkÖping Sweden;

    Polymer Technology Department of Chemical and Biological Engineering Chalmers University of Technology SE-412 96 GÖteborg Sweden;

    Biomolecular and Organic Electronics IFM and Center of Organic Electronics LinkÖping University SE-581 83 LinkÖping Sweden;

    Biomolecular and Organic Electronics IFM and Center of Organic Electronics LinkÖping University SE-581 83 LinkÖping Sweden;

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

    polymer solar cells; semi-transparent solar cells; interface; conjugated polymers; tandem solar cells;

    机译:聚合物太阳能电池;半透明太阳能电池;界面;共轭聚合物;串联太阳能电池;

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