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Alkyl Chain Engineering of Solution-Processable Star-Shaped Molecules for High-Performance Organic Solar Cells

机译:高性能有机太阳能电池溶液可加工星形分子的烷基链工程

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摘要

The impact of alkyl side-chain substituents on conjugated polymers on the photovoltaic properties of bulk heterojunction (BHJ) solar cells has been studied extensively, but their impact on small molecules has not received adequate attention. To reveal the effect of side chains, a series of star-shaped molecules based on a triphenylamine (TPA) core, bithiophene, and dicyanovinyl units derivatized with various alkyl end-capping groups of methyl, ethyl, hexyl and dodecyl is synthesiyed and studied to comprehensively investigate structure-properties relationships. UV-vis absorption and cyclic voltammetry data show that variations of alkyl chain length have little influence on the absorption and highest occupied molecular orbital (HOMO)-lowest unoccupied molecular orbital (LUMO) levels. However, these seemingly negligible changes have a pronounced impact on the morphology of BHJ thin films as well as their charge carrier separation and transportation, which in turn influences the photovoltaic properties of these small-molecule-based BHJ devices. Solution-processed organic solar cells (OSCs) based on the small molecule with the shortest methyl end groups exhibit high short circuit current (Jsc) and fill factor (FF), with an efficiency as high as 4.76% without any post-treatments; these are among the highest reported for solution-processed OSCs based on star-shaped molecules.
机译:烷基侧链取代基对共轭聚合物对本体异质结(BHJ)太阳能电池光伏性能的影响已得到广泛研究,但它们对小分子的影响尚未引起足够的重视。为了揭示侧链的作用,合成了一系列基于三苯胺(TPA)核,联噻吩和双氰基乙烯基单元的星形分子,这些单元被甲基,乙基,己基和十二烷基的各种烷基封端基团衍生全面研究结构-属性关系。紫外可见吸收和循环伏安数据表明,烷基链长度的变化对吸收几乎没有影响,最高占据分子轨道(HOMO)-最低未占据分子轨道(LUMO)水平。但是,这些看似微不足道的变化对BHJ薄膜的形貌及其电荷载流子的分离和迁移产生了显着影响,进而影响了这些基于小分子的BHJ器件的光电性能。以甲基端基最短的小分子为基础的固溶处理有机太阳能电池(OSC)表现出高的短路电流(Jsc)和填充因子(FF),效率高达4.76%,无需任何后处理;这些是报道的基于星形分子的溶液处理OSC的最高报告之一。

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  • 来源
    《Advanced energy materials》 |2014年第5期|1-10|共10页
  • 作者单位

    Institute of Materials for Electronics and Energy Technology (I-MEET) Friedrich-Alexander-University Erlangen-Nuremberg Erlangen Germany;

    Nikolopov Institute of Synthetic Polymeric Materials of the Russian Academy of Sciences Moscow Russia;

    Institute of Materials for Electronics and Energy Technology (I-MEET) Friedrich-Alexander-University Erlangen-Nuremberg Erlangen Germany;

    Nikolopov Institute of Synthetic Polymeric Materials of the Russian Academy of Sciences Moscow Russia;

    Nesmeyanov Institute of Organoelement Compounds Russian Academy of Sciences Moscow Russia;

    Nikolopov Institute of Synthetic Polymeric Materials of the Russian Academy of Sciences Moscow Russia;

    Nikolopov Institute of Synthetic Polymeric Materials of the Russian Academy of Sciences Moscow Russia;

    Nikolopov Institute of Synthetic Polymeric Materials of the Russian Academy of Sciences Moscow Russia;

    Nikolopov Institute of Synthetic Polymeric Materials of the Russian Academy of Sciences Moscow Russia;

    Institute of Physics University of Siegen Emmy-Noether-Campus Siegen Germany;

    Heraeus Precious Metals GmbH Co. KG Conductive Polymers Division (Clevios) Leverkusen Germany;

    Nikolopov Institute of Synthetic Polymeric Materials of the Russian Academy of Sciences Moscow Russia;

    Chemistry Department Moscow State University Moscow Russia;

    Institute of Materials for Electronics and Energy Technology (I-MEET) Friedrich-Alexander-University Erlangen-Nuremberg Erlangen Germany;

    Institute of Materials for Electronics and Energy Technology (I-MEET) Friedrich-Alexander-University Erlangen-Nuremberg Erlangen Germany;

    Bavarian Center for Applied Energy Research (ZAE Bayern) Erlangen Germany;

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

    alkyl side-chain substituents; solar cells; star-shaped molecules; structure–property relationships; charge carrier separation;

    机译:烷基侧链取代基;太阳能电池;星形分子;结构-性质关系;电荷载流子分离;

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