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N-type doping of organic semiconductors based on air stable photocatalyst

ORAL

Abstract

N-type doping for organic semiconductors is challenging due to the poor stability of the doped organic semiconductor and low doping efficiency. Successful n-type doping examples with good doping efficiency and high conductivity are very limited. Here we introduce a new concept, photoredox catalyst-based n-typed doping, where the photoredox catalyst – when excited by the light – can be used to generate oxidants, or reductants to achieve either p-type doping or n-type doping. We will present our research on photocatalyst-based n-type doping of various conjugated organic semiconductors. A range of polymers, featuring diverse side chains and backbones, were investigated. Successful n-type doping was achieved, demonstrating that different energy level alignments can significantly influence photocatalyst-driven doping results. Additionally, ion exchange was found to have a substantial impact on the efficiency of photocatalyst based n-type doping.

Presenters

  • Liang Yan

    University of North Carolina at Chapel Hill

Authors

  • Liang Yan

    University of North Carolina at Chapel Hill

  • Xinzheng Yang

    University of Washington

  • Mengqi Yang

    University of Washington

  • Justin Neu

    University of North Carolina at Chapel Hill

  • Somayeh Kashani

    North Carolina State University

  • Rajiv Giridharagopal

    University of Washington

  • Yusuf Olanrewaju

    North Carolina State University

  • Franky So

    North Coralina State University

  • David S Ginger

    University of Washington

  • Harald W Ade

    North Carolina State University

  • Xiaosong Li

    University of Washington

  • Wei You

    University of North Carolina at Chapel Hill