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Non-Fullerene Acceptor Doped Block Copolymer for Efficient and Stable Organic Solar Cells

  • Yue Wu
  • , Qunping Fan
  • , Baobing Fan
  • , Feng Qi
  • , Ziang Wu
  • , Francis R. Lin
  • , Yang Li
  • , Chun Sing Lee
  • , Han Young Woo
  • , Hin Lap Yip*
  • , Alex K.Y. Jen*
  • *Corresponding author for this work

    Research output: Contribution to journalArticlepeer-review

    Abstract

    Bulk-heterojunction organic solar cells (OSCs) often suffer from morphological instability due to thermo- or photoinduced molecular diffusion. To circumvent such instability, OSCs incorporating a single-component block copolymer with covalently bonded blocks can restrain molecular diffusion. However, the device efficiencies of such block copolymers are lagging behind those based on a blended active layer due to a nonideal morphological problem. Herein, we successfully alleviate this problem by introducing a small-molecule additive, Y6, having a structure similar to that of the acceptor block. The addition of Y6 improves the packing of acceptor blocks in the block copolymer, PM6-b-PYIT. This helps improve electron transport and enhances the device efficiency to 15.55%, representing the highest value reported for block-copolymer-based OSCs. Moreover, the device stability is significantly improved due to the padding of Y6 into the nanovoids of the copolymer matrix to restrict the molecular motion. This work presents an effective strategy to address the efficiency-stability tradeoff in OSCs.

    Original languageEnglish
    Pages (from-to)2196-2202
    Number of pages7
    JournalACS Energy Letters
    Volume7
    Issue number7
    DOIs
    Publication statusPublished - 2022 Jul 8

    Bibliographical note

    Publisher Copyright:
    © 2022 American Chemical Society. All rights reserved.

    UN SDGs

    This output contributes to the following UN Sustainable Development Goals (SDGs)

    1. SDG 7 - Affordable and Clean Energy
      SDG 7 Affordable and Clean Energy

    ASJC Scopus subject areas

    • Chemistry (miscellaneous)
    • Renewable Energy, Sustainability and the Environment
    • Fuel Technology
    • Energy Engineering and Power Technology
    • Materials Chemistry

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