首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Tetraphenylsilane derivatives spiro-annulated by triphenylamine/carbazole with enhanced HOMO energy levels and glass transition temperatures without lowering triplet energy: host materials for efficient blue phosphorescent OLEDs
【24h】

Tetraphenylsilane derivatives spiro-annulated by triphenylamine/carbazole with enhanced HOMO energy levels and glass transition temperatures without lowering triplet energy: host materials for efficient blue phosphorescent OLEDs

机译:由三苯胺/咔唑螺旋环化的四苯基硅烷衍生物,具有增强的HOMO能级和玻璃化转变温度,且不降低三重态能量:高效蓝色磷光OLED的主体材料

获取原文
获取原文并翻译 | 示例
       

摘要

Two new host materials, SiBSTPA and SiBSCz, were designed and synthesized based on 4,4'-bis(triphenylsilyl)-biphenyl (BSB). Their thermal, electrochemical, electronic absorption and photoluminescent properties were fully investigated. The introduction of spiro-annulated triphenylamine/carbazole moieties on 4,4'-bis(triphenylsilyl)-biphenyl (BSB) increases the HOMO energy levels from -6.49 eV (BSB) to -5.30 eV for SiBSTPA and -5.56 eV for SiBSCz, and accordingly facilitates hole injection from the nearby hole-transporting layer. Compared to 4,4'-bis(triphenylsilyl)-biphenyl (BSB), higher glass transition temperatures (T_g) were observed at 133 °C for SiBSTPA and 129 °C for SiBSCz, owing to the rigid spiro-annulated structures. Meanwhile, the perpendicular conformation between the triphenylamine or carbazole plane and the biphenyl plane effectively prevents the extension of the π-conjugation and consequently causes no depreciation of their triplet energies (ca. 2.75 eV). Phosphorescent organic light-emitting devices (PhOLEDs) with the following configuration: ITO/NPB/TCTA/EML/TAZ/LiF/AI were fabricated by using the two host materials and the blue emitter bis[2-(4',6'-difluorophenyl)pyridinato-N,C~2']iridium(III) picolate (Flrpic) as the guest. These devices exhibited good performance with the maximum current efficiency of 21.4 cd A~(-1) and the maximum power efficiency of 15,6 Im W~(-1).
机译:基于4,4'-双(三苯基甲硅烷基)-联苯(BSB)设计和合成了两种新的主体材料SiBSTPA和SiBSCz。对它们的热,电化学,电子吸收和光致发光性能进行了充分研究。在4,4'-双(三苯基甲硅烷基)-联苯(BSB)上引入螺环化三苯胺/咔唑基团会使HOB能级从SiBSTPA的-6.49 eV(BSB)增至-5.30 eV,对于SiBSCz则从-5.56 eV增加,因此有利于从附近的空穴传输层注入空穴。与4,4'-双(三苯基甲硅烷基)-联苯(BSB)相比,由于刚性螺线环状结构,在133°C的SiBSTPA和129°C的SiBSCz处观察到更高的玻璃化转变温度(T_g)。同时,三苯胺或咔唑平面与联苯平面之间的垂直构象有效地阻止了π-共轭的扩展,因此不会导致其三重态能量下降(约2.75 eV)。具有以下配置的磷光有机发光器件(PhOLED):ITO / NPB / TCTA / EML / TAZ / LiF / AI通过使用两种主体材料和蓝色发射器bis [2-(4',6'-作为客体的二氟苯基)吡啶基-N,C〜2']吡啶甲酸铱(III)(Flrpic)。这些器件表现出良好的性能,最大电流效率为21.4 cd A〜(-1),最大功率效率为15,6 Im W〜(-1)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号