Self-Reinforcing Degradation of Solution-Processed Small-Molecule OLEDs: Excited-States and Molecular Interactions as Key Triggers

  • Cha, Eonji
  • Jeon, Junwon
  • Kim, Hyeon Woo
  • Lee, Han Uk
  • Woo, Joo Yoon
  • ... Han, Tae-Hee
  • 외 3명
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초록

Solution-processed organic light-emitting diodes (SOLEDs) are promising candidates for cost-efficient and scalable displays, if their operational stability can be increased to match that of thermal-evaporation-processed OLEDs. This study provides a comprehensive analysis of the fundamental degradation mechanisms in SOLEDs. This work reveals a self-reinforcing degradation cycle in which charge accumulation in molecular aggregates and hetero-interfaces strengthens exciton-polaron interactions, thereby promoting further molecular aggregation and nonradiative exciton annihilation. This work applies material engineering strategies, including the use of host-guest combination with minimal intermolecular interactions, modification of the hole injection interface, and suppression of self-reinforcing degradation pathway to obtain SOLEDs that have luminous efficiency exceeding 100 cd A-1 and a half lifetime of over 700 h. These findings establish a strategic approach to increase SOLED efficiency and longevity, while offering insights into the design principles required for next-generation organic optoelectronic devices.

키워드

charge injectiondegradationorganic light-emitting diodessolution processLIGHT-EMITTING-DIODESHIGHLY EFFICIENTDEVICESLAYERAGGREGATIONSTABILITY
제목
Self-Reinforcing Degradation of Solution-Processed Small-Molecule OLEDs: Excited-States and Molecular Interactions as Key Triggers
저자
Cha, EonjiJeon, JunwonKim, Hyeon WooLee, Han UkWoo, Joo YoonYeo, Jun-SuKwon, Hyuk BinCho, Sung BeomHan, Tae-Hee
DOI
10.1002/adfm.202508146
발행일
2025-12
유형
Article; Early Access
저널명
Advanced Materials for Optics and Electronics
35
52
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1 ~ 11