Electroluminescence Yield in Donor−Acceptor Copolymers and Diblock Polymers:  A Comparative Theoretical Study

Stoyan Karabunarliev* and Eric R. Bittner
Department of Chemistry and Center for Materials Chemistry, University of Houston, Houston, Texas 77204-5003
J. Phys. Chem. B, 2004, 108 (29), pp 10219–10225
DOI: 10.1021/jp036587w
Publication Date (Web): February 5, 2004
Copyright © 2004 American Chemical Society

 Part of the special issue “Gerald Small Festschrift”.

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*

 Corresponding author. E-mail:  karabunarliev@uh.edu.

Abstract

The recombination of an electron and hole injected into a nondegenerate π-conjugated polymer is simulated as a relaxation in the excited electronic state space. The rates of the spontaneous one-photon and one-phonon processes are derived within a diabatic model adjusted to the electron−vibrational spectroscopy of PPV. It is shown that the formation of the emissive singlet exciton is accelerated in a regular acceptor−donor copolymer because of the removal of the charge-transfer states. However, the acceptor−donor junction in a diblock heterostructure gives rise to a low-lying polar state that furnishes a nonemissive decay channel. An applied electric field is shown to reduce the luminescence efficiency in the homopolymer and copolymer by polarizing the exciton. In contrast, the quantum yield for the diblock polymer increases with forward bias because of the mixing of the polar exciplex-like state and the exciton.

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History

  • Published In Issue July 22, 2004
  • Received August 30, 2003
    Revised December 10, 2003

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