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Construction of simple and low-cost acceptors for efficient non-fullerene organic solar cells

机译:高效非富烯有机太阳能电池的简单和低成本占用的构建

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摘要

The flexibility in structural design of organic semiconductors endows organic solar cells (OSCs) not only great function-tunabilities, but also high potential toward practical application. In this work, four simple and low-cost non-fullerene acceptors with fluorene or carbazole as central cores, 2-(6-oxo-5,6-dihydro-4H-cyclopenta[c] thiophen-4-ylidene)malononitrile (TC) as terminal groups, and thiophene or furan as linkers, named DTC-T-F, DTC-F-F, DTC-T-C and DTC-F-C, are developed through twostep synthesis, and their photophysical properties, electrochemical behavior and photovoltaic performance are systematically and comparatively studied. The results revealed that fluorene-based acceptors exhibited superior photophysical properties and morphology characteristics than carbazole-based counterparts, and thiophene is more suitable as bridging groups. Combining the advantages of both, the BHJ-OSC based on PTB7-Th:DTC-T-F blend film showed a high PCE of 8.8%, with a V_(oc) of 0.78 V, a J_(sc) of 17.46 mA cm~(-2), and an FF of 0.65, which is the highest value in the PTB7-Th and fluorene-based acceptors coupled devices, implying its potential application.
机译:有机半导体结构设计的灵活性赋予有机太阳能电池(OSC)不仅具有巨大的功能性,而且对实际应用的高潜力。在这项工作中,具有芴或咔唑的四种简单和低成本的非富勒烯受体,作为中央核,2-(6-氧代-5,6-二氢-4H-环戊基[C]噻吩-4- ylidene)丙二腈(TC作为末端组,噻吩或呋喃作为接头,通过TwoStep合成开发了名为DTC-TF,DTC-FF,DTC-TC和DTC-FC的接头,以及它们的光物理性质,电化学行为和光伏性能系统和比较。结果表明,芴基受体表现出比基于咔唑的对应物的优异的光学性质和形态特征,并且噻吩更适合作为桥接基团。结合两者的优点,基于PTB7-TH的BHJ-OSC:DTC-TF混合膜显示出高的PCE为8.8%,V_(OC)为0.78 V,A J_(SC)为17.46 mA cm〜( -2)和0.65的FF,其是PTB7-和基于氟化的受体耦合器件中的最高值,暗示其潜在的应用。

著录项

  • 来源
    《Organic Electronics》 |2021年第2期|106026.1-106026.7|共7页
  • 作者单位

    College of Chemical Engineering and Energy Technology Dongguan University of Technology 523808 China;

    College of Chemical Engineering and Energy Technology Dongguan University of Technology 523808 China;

    College of Chemical Engineering and Energy Technology Dongguan University of Technology 523808 China;

    College of Chemical Engineering and Energy Technology Dongguan University of Technology 523808 China;

    College of Chemical Engineering and Energy Technology Dongguan University of Technology 523808 China;

    College of Chemical Engineering and Energy Technology Dongguan University of Technology 523808 China;

    College of Chemical Engineering and Energy Technology Dongguan University of Technology 523808 China;

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

    Non-fullerene organic solar cells; Non-fullerene acceptors; Simple and low-cost; Design and synthesis; Photovoltaic performance;

    机译:非富烯有机太阳能电池;非富富勒因受体;简单而低成本;设计和合成;光伏性能;

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