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Ultrastable Supramolecular Self-Encapsulated Wide-Bandgap Conjugated Polymers for Large-Area and Flexible Electroluminescent Devices

  • Jinyi Lin
  • , Bin Liu
  • , Mengna Yu
  • , Xuhua Wang
  • , Zongqiong Lin
  • , Xinwen Zhang
  • , Chen Sun
  • , Juan Cabanillas-Gonzalez
  • , Linghai Xie
  • , Feng Liu
  • , Changjin Ou
  • , Lubing Bai
  • , Yamin Han
  • , Man Xu
  • , Wensai Zhu
  • , Trevor A. Smith
  • , Paul N. Stavrinou
  • , Donal D.C. Bradley
  • , Wei Huang
  • Nanjing Tech University
  • University of Oxford
  • Imperial College London
  • Northwestern Polytechnical University Xian
  • Nanjing University of Posts and Telecommunications
  • University of Melbourne
  • Instituto IMDEA Nanociencia

Research output: Contribution to journalArticlepeer-review

96 Scopus citations

Abstract

Controlling chain behavior through smart molecular design provides the potential to develop ultrastable and efficient deep-blue light-emitting conjugated polymers (LCPs). Herein, a novel supramolecular self-encapsulation strategy is proposed to construct a robust ultrastable conjugated polydiarylfluorene (PHDPF-Cz) via precisely preventing excitons from interchain cross-transfer/coupling and contamination from external trace H2O/O2. PHDPF-Cz consists of a mainchain backbone where the diphenyl groups localize at the 9-position as steric bulk moieties, and carbazole (Cz) units localize at the 4-position as supramolecular π-stacked synthon with the dual functionalities of self-assembly capability and hole-transport facility. The synergistic effect of the steric bulk groups and π-stacked carbazoles affords PHDPF-Cz as an ultrastable property, including spectral, morphological stability, and storage stability. In addition, PHDPF-Cz spin-coated gelation films also show thickness-insensitive deep-blue emission with respect to the reference polymers, which are suitable to construct solution-processed large-scale optoelectronic devices with higher reproducibility. High-quality and uniform deep-blue emission is observed in large-area solution-processed films. The electroluminescence shows high-quality deep-blue intrachain emission with a CIE (0.16, 0.12) and a very narrow full width at half-maximum of 32 nm. Finally, large-area and flexible polymer light-emitting devices with a single-molecular excitonic behavior are also fabricated. The supramolecular self-encapsulation design provides an effective strategy to construct ultrastable LCPs for optoelectronic applications.

Original languageEnglish
Article number1804811
JournalAdvanced Materials
Volume31
Issue number1
DOIs
StatePublished - 4 Jan 2019

Keywords

  • deep blue
  • flexible electroluminescent devices
  • polyfluorene
  • self-encapsulated strategy
  • ultrastable

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