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城戸・笹部・千葉研究室

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  • 2021年
  • 【論文関連】D2 荒井博貴君と笹部久宏准教授の高性能有機ELを実現する非対称スピロビアクリジン誘導体 TADF 材料群の論文が Wiley の Chemistry A European Journal (IF: 4.857) の Front Cover に選出!
2021年06月28日
【論文関連】D2 荒井博貴君と笹部久宏准教授の高性能有機ELを実現する非対称スピロビアクリジン誘導体 TADF 材料群の論文が Wiley の Chemistry A European Journal (IF: 4.857) の Front Cover に選出!

D2 荒井博貴君(Mr. Hiroki Arai)と笹部久宏准教授の高性能有機ELを実現する非対称スピロビアクリジン誘導体 TADF 材料群に関する「Asymmetric Spirobiacridine-based Delayed Fluorescence Emitters for High-performance Organic Light-Emitting Devices」と題する論文が Wiely の Chemistry A European Journal (IF: 4.857) に受理され、Front Cover に選出されました!博貴、おめでとう!発光分子を鍵に見立て、未来の有機ELの扉を開ける、博貴デザインのカバーピクチャーをみてやってください。

Title: Asymmetric Spirobiacridine-based Delayed Fluorescence Emitters for High-performance Organic Light-Emitting Devices
By Hiroki Arai, Hisahiro Sasabe*, Kengo Kumada, Hisaki Tsuneyama, and Junji Kido*, Chem. Eur. J., 2021, accepted.


Abstract: Recently, researchers have focused on thermally activated delayed fluorescence (TADF) for efficient future lighting and displays. Among TADF emitters, a combination of triazine and acridine is a promising candidate for realizing high-efficiency organic light-emitting devices (OLEDs). However, simultaneous development of perfect horizontal orientation (Θ = 100%) and an external quantum efficiency (EQE) of over 40% is still challenging. Here, to obtain insights for further improvements of a triazine/acridine combination, we developed various asymmetric spirobiacridine (SBA)-based TADF emitters with a unity photoluminescence quantum yield and high Θ ratio of over 80%. Furthermore, we studied the substitution effects of the triazine acceptor unit on the photophysical properties, including molecular orientations and OLED performance. The corresponding OLED exhibited sky-blue emission with a high EQE of over 30%.

 

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