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Enhanced efficiency of solution-processed lanthanide-based OLEDs via ligand engineering: Tuning excited-state lifetime and charge transport with Se-modified ligand

  • Zhipeng Guo
  • , Arseny Gladkikh
  • , Egor Latipov
  • , Andrey Vashchenko
  • , Yaxuan Liu
  • , Alexey Medvedko
  • , Alexander Goloveshkin
  • , Olga Maloshitskaya
  • , Alexey Alexandrov
  • , Aowei Zhou
  • , Yiming Yin
  • , Yanan Zhu
  • , Hong Meng
  • , Valentina Utochnikova
  • Moscow State University
  • Shenzhen MSU-BIT University
  • Russian Academy of Sciences
  • P.N. Lebedev Physical Institute of the Russian Academy of Sciences
  • Beijing Institute of Technology
  • N.D. Zelinsky Institute of Organic Chemistry, Russian Academy of Sciences
  • Russian Academy of Sciences
  • Russian Academy of Sciences
  • Tsinghua University

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

2 Citations (Scopus)

Résumé

Lanthanide complexes attract significant attention for their narrow-band emission with nearly constant wavelengths; however, developing high-efficiency lanthanide-complex organic light-emitting diode (OLED) devices and methodologies remains a primary research focus. We selected neutral ligands [1,2,5]thiadiazolo[3,4-f][1,10]phenanthroline (TDZP) and its selenium (Se)-containing counterpart, [1,2,5]selenadiazolo[3,4-f][1,10]phenanthroline (SDZP), to form complexes with dibenzoylmethane (Hdbm). Detailed investigations combining theoretical calculations and experimental data reveal synergistic effects between excited-state lifetimes and charge carrier mobility in enhancing quantum efficiency. All the devices demonstrated characteristic lanthanide ion emission, with the Eu(dbm)3SDZP-based OLED achieving remarkable electroluminescent performance: a maximum quantum efficiency (EQEmax) of 6.7 %, ranking among the highest reported values for Eu-based complex OLEDs. This integrated computational-experimental approach establishes a viable strategy for developing high-efficiency lanthanide-complex OLEDs.

langue originaleAnglais
Numéro d'article112136
journalChinese Chemical Letters
Volume37
Numéro de publication10
Les DOIs
étatPublié - 1 oct. 2026
Modification externeOui

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