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Synthesis of indenocarbazole-based efficient deep-blue fluorescent emitter with a narrow emission band

  • Eun Young Park
  • , Seongjun Shin
  • , Vasudevan Thangaraji
  • , Soyeon Kim
  • , Jihoon Lee
  • , Min Chul Suh

Research output: Contribution to journalArticlepeer-review

7 Citations (Scopus)

Abstract

Deep-blue fluorescent materials are a key component in the development of organic light emitting diode (OLED). The synthesis of efficient deep-blue luminescent materials with narrowband emissions and stable OLED devices is important. Here, three new deep-blue fluorescent materials containing electron donor as an indenocarbazole and π-bridge linkage as a pyrene moiety were designed and synthesized. They possessed high thermal decomposition temperature higher than 498 °C. The three new fluorescent dopants, 1,6-DICP (1,6-bis(7,7-dimethylindeno[2,1–b] carbazol-5(7H)-yl)pyrene), 1,7-DICP (5,5′-(pyrene-1,7-diyl)bis(7,7-dimethyl-5,7-dihydroindeno [2,1–b]carbazole)), and 1,6-DIC-3,8-DIP (5,5′-(3,8-diisopropylpyrene-1,6-diyl)bis(7,7-dimethyl-5,7-dihydroindeno[2,1–b]carbazole)) were synthesized and doped in 2-methyl-9,10-bis(naphthalen-2-yl)anthracene as a blue host for emitting layer. The devices fabricated with these emitting materials showed deep-blue emission with peak wavelength (λem) at 445, 445, and 446 nm [CIE (1931): (0.15, 0.09), (0.15, 0.09), and (0.149, 0.085)]. It also exhibited high color purity with narrow spectral width (FWHM: 59 nm). In addition, they showed high external quantum efficiencies (EQE) of 3.61, 4.97, and 8.34%, respectively. In particular, the 1,6-DIC-3,8-DIP-based device exhibited high EQE and high current and power efficiencies, owing to the high photoluminescence quantum yield (PLQY) presumably due to a suppression of molecular aggregation by structural modification to give a twisted structure with a high dihedral angle.

Original languageEnglish
Pages (from-to)313-319
Number of pages7
JournalJournal of Industrial and Engineering Chemistry
Volume107
DOIs
Publication statusPublished - 25 Mar 2022

Bibliographical note

Publisher Copyright:
© 2021 The Korean Society of Industrial and Engineering Chemistry

Keywords

  • Deep-blue fluorescent materials
  • High PLQY
  • Indenocarbazole
  • Narrow bandwidth
  • Organic light-emitting diodes
  • Pyrene

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