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螺旋型顺式二苯乙烯/芴(STIF)、10,11-苯并及咪唑稠合 STIF 杂化物作为有机发光二极管应用的电子传输材料。

Spirally Configured cis-Stilbene/fluorene (STIF), 10,11-Benzo-, and Imidazole-fused STIF Hybrids as Electron-Transporting Materials for Organic Light-Emitting Diode Applications.

机构信息

Department of Chemistry, National Tsing Hua University, No.101, Section 2, Kuang-Fu Road, Hsinchu, 30013, Taiwan R.O.C.

出版信息

Chem Asian J. 2023 Jul 17;18(14):e202300482. doi: 10.1002/asia.202300482. Epub 2023 Jun 21.

DOI:10.1002/asia.202300482
PMID:37259775
Abstract

A new class of cis-stilbene/fluorene (STIF) and 10,11-benzo- and imidazole-fused dibenzosuberane/fluorene (Bz-STIF and Imd-STIF) spiro hybrid systems with paired cyanophenyl, pyridyl, and/or pyrimidyl units was synthesized as electron transporting materials (ETMs) for blue fluorescent OLEDs (FOLEDs) and phosphorescent organic light emitting diodes (PhOLEDs). Their photophysical (UV-Vis absorption and emission), electrochemical (E /E ), morphological (glassy transition temperature, T ), and thermal stability (decomposition temperature, T ) properties are systematical compared. Their correlations regarding the effects of the fused unit/substituent(s) in the STIF core on the morphological/thermal stability, HOMO/LUMO energy level, π-electron distribution profiles by DFT calculations, and electron mobility are established. Blue FOLEDs are fabricated by using them and TmPyPB (a control) as ETMs. The effects of their LUMO energy levels and electron mobilities on the device turn-on voltage, performance efficiencies including external quantum efficiency/current efficiency (EQE/CE), power efficiency (PE), and device lifetime at 5% luminescence decay (T ) are correlated. Among them, three best ETMs and TmPyPB (a control) are selected for further green and blue PhOLED fabrications. The effects of their LUMO energy levels and electron mobilities on the device turn-on voltage and performance efficiencies are confirmed, allowing for potential commercial applications.

摘要

一类新型顺式二苯乙烯/芴(STIF)和 10,11-苯并及咪唑并并二苯并环丁烷/芴(Bz-STIF 和 Imd-STIF)螺混合体系,带有配对的氰基苯基、吡啶基和/或嘧啶基单元,被合成作为用于蓝色荧光 OLED(FOLED)和磷光有机发光二极管(PhOLED)的电子传输材料(ETM)。对它们的光物理(紫外-可见吸收和发射)、电化学(E / E )、形态学(玻璃化转变温度,T )和热稳定性(分解温度,T )性质进行了系统比较。通过密度泛函理论(DFT)计算,建立了 STIF 核中融合单元/取代基对形态/热稳定性、HOMO/LUMO 能级、π 电子分布轮廓以及电子迁移率的影响之间的相关性。通过使用它们和 TmPyPB(对照物)作为 ETM 来制备蓝色 FOLED。研究了它们的 LUMO 能级和电子迁移率对器件开启电压、性能效率(包括外量子效率/电流效率(EQE/CE)、功率效率(PE)和 5%发光衰减时的器件寿命(T ))的影响。其中,选择了三个最佳的 ETM 和 TmPyPB(对照物)用于进一步制备绿色和蓝色 PhOLED。确认了它们的 LUMO 能级和电子迁移率对器件开启电压和性能效率的影响,为潜在的商业应用提供了可能。

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