Development of Perylene-Based Non-Fullerene Acceptors through Bay-Functionalization Strategy

  • Keisuke Fujimoto
    Department of Applied Chemistry, Faculty of Engineering, Shizuoka University, 3-5-1 Johoku, Naka-ku, Hamamatsu, Shizuoka 432-8561, Japan
  • Masaki Takahashi
    Department of Applied Chemistry, Faculty of Engineering, Shizuoka University, 3-5-1 Johoku, Naka-ku, Hamamatsu, Shizuoka 432-8561, Japan
  • Seiichiro Izawa
    Institute for Molecular Science, 5-1 Higashiyama, Myodaiji, Okazaki, Aichi 444-8787, Japan
  • Masahiro Hiramoto
    Institute for Molecular Science, 5-1 Higashiyama, Myodaiji, Okazaki, Aichi 444-8787, Japan

書誌事項

公開日
2020-05-06
権利情報
  • https://creativecommons.org/licenses/by/4.0/
DOI
  • 10.3390/ma13092148
公開者
MDPI AG

説明

<jats:p>Perylene has had a tremendous impact in the history of material research for the molecular semiconductors. Among numerous derivatives of this polyaromatic hydrocarbon, perylene diimide (PDI) represents a promising class of organic materials envisioned as non-fullerene acceptors (NFAs) for the practical organic photovoltaic (OPV) applications due to their enhanced photo- and thermal stability and remarkably high electron affinity, some of which realize band-like transport properties. The present review guides some of the representative achievements in the development of rationally designed PDI systems, highlighting synthetic methodologies based on bay-functionalization strategies for creating well-designed molecular nanostructures and structure-performance relationship of perylene-based small molecular acceptors (SMAs) for the photovoltaic outcomes.</jats:p>

収録刊行物

  • Materials

    Materials 13 (9), 2148-, 2020-05-06

    MDPI AG

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