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首页> 外文期刊>Advanced energy materials >Efficient Polymer Solar Cells on Opaque Substrates with a Laminated PEDOT:PSS Top Electrode
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Efficient Polymer Solar Cells on Opaque Substrates with a Laminated PEDOT:PSS Top Electrode

机译:带有层压PEDOT:PSS顶部电极的不透明基板上的高效聚合物太阳能电池

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摘要

Solution processed polymer:fullerene solar cells on opaque substrates have been fabricated in conventional and inverted device configurations. Opaque substrates, such as insulated steel and metal covered glass, require a trans-parent conducting top electrode. We demonstrate that a high conducting (900 S cm~(-1)) PEDOT:PSS layer, deposited by a stamp-transfer lamination technique using a PDMS stamp, in combination with an Ag grid electrode provides a proficient and versatile transparent top contact.Lamination of large size PEDOT:PSS films has been achieved on variety of surfaces resulting in ITO-free solar cells. Power conversion efficiencies of 2.1% and 3.1% have been achieved for P3HT:PCBM layers in inverted and conventional polarity configurations, respectively. The power conversion efficiency is similar to conventional glass/ITO-based solar cells. The high fill factor (65%) and the unaffected open-circuit voltage that are consistently obtained in thick active layer inverted geometry devices, demonstrate that the laminated PEDOT:PSS top electrodes provide no significant potential or resistive losses.
机译:溶液处理过的聚合物:在不透明基板上的富勒烯太阳能电池已经以常规和倒置的器件配置进行了制造。不透明的基材(例如绝缘钢和金属覆盖的玻璃)需要透明的导电顶部电极。我们证明高导电性(900 S cm〜(-1))PEDOT:PSS层,通过使用PDMS印模的印模转移层压技术沉积,并结合Ag栅电极,可提供熟练而通用的透明顶部接触。已经在各种表面上实现了大尺寸PEDOT:PSS膜的层压,从而形成了不含ITO的太阳能电池。对于P3HT:PCBM层,在反相和常规极性配置下,功率转换效率分别达到2.1%和3.1%。功率转换效率类似于常规的基于玻璃/ ITO的太阳能电池。在厚的有源层倒置几何器件中始终获得的高填充因子(65%)和不受影响的开路电压表明,层压的PEDOT:PSS顶部电极没有提供明显的电势或电阻损耗。

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  • 来源
    《Advanced energy materials 》 |2013年第6期| 782-787| 共6页
  • 作者单位

    Materials innovation institute (M2i) 2600 GA, Delft, Netherlands,Molecular Materials and Nanosystems Eindhoven University of Technology 5600 MB Eindhoven, Netherlands;

    Molecular Materials and Nanosystems Eindhoven University of Technology 5600 MB Eindhoven, Netherlands;

    Molecular Materials and Nanosystems Eindhoven University of Technology 5600 MB Eindhoven, Netherlands;

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