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Sticky Interconnect for Solution-Processed Tandem Solar Cells

机译:用于溶液处理的串联太阳能电池的粘性互连

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摘要

Graphene oxide (GO) can be viewed as a two-dimensional, random diblock copofymer with distributed nano-size graphitic patches and highly oxidized domains, thus capable of guiding the assembly of other materials through both π—π stacking and hydrogen bonding. Upon mixing GO and conducting polymer poly{3,4-ethylenedioxythiophene):poly(sty-renesulfonate) (PEDOT:PSS) in water, a dispersion with dramatically increased viscosity is obtained, which turns into sticky thin films upon casting. Surprisingly, the insulating GO makes PEDOT much more conductive by altering its chain conformation and morphology. The GO/PEDOT gel can function as a metal-free solder for creating mechanical and electrical connections in organic optoelectronic devices. As a proof-of-concept, polymer tandem solar cells have been fabricated by a direct adhesive lamination process enabled by the sticky GO/PEDOT film. The sticky interconnect can greatly simplify the fabrication of organic tandem architectures, which has been quite challenging via solution processing. Thus, it could facilitate the construction of high-efficiency tandem solar cells with different combinations of solution-processable materials.
机译:氧化石墨烯(GO)可以看作是具有分布的纳米级石墨斑块和高度氧化域的二维无规二嵌段共聚体,因此能够通过π-π堆叠和氢键结合来引导其他材料的组装。在将GO混合并在水中传导聚合物聚{3,4-乙撑二氧噻吩):聚(苯乙烯磺酸酯)(PEDOT:PSS)之后,获得了粘度显着增加的分散体,在流延时变成粘性薄膜。令人惊讶的是,绝缘GO通过改变其链构象和形态使PEDOT更具导电性。 GO / PEDOT凝胶可用作无金属焊料,用于在有机光电器件中建立机械和电气连接。作为概念验证,已经通过粘性GO / PEDOT膜实现的直接粘合剂层压工艺制造了聚合物串联太阳能电池。粘性互连可以极大地简化有机串联体系结构的制造,这对于解决方案的处理来说是非常困难的。因此,它可以促进具有可溶液处理材料的不同组合的高效串联太阳能电池的构造。

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  • 来源
    《Journal of the American Chemical Society》 |2011年第24期|p.9262-9265|共4页
  • 作者单位

    Department of Materials Science and Engineering, Northwestern University, Evanston, Illinois 60208, United States;

    Department of Materials Science and Engineering, Northwestern University, Evanston, Illinois 60208, United States;

    Department of Materials Science and Engineering, Northwestern University, Evanston, Illinois 60208, United States;

    Department of Materials Science and Engineering, Northwestern University, Evanston, Illinois 60208, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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