首页> 外文会议>SPIE Conference on Organic Light Emitting Materials and Devices >Novel host materials for blue phosphorescent OLEDs
【24h】

Novel host materials for blue phosphorescent OLEDs

机译:蓝磷光OLED的新型主体材料

获取原文

摘要

We present two classes of host materials for blue phosphors. The first are carbazole substituted biphenyls 1-9. In these CBP-type materials the triplets are confined to one half of the molecules by using either twisted biphenyls or by a metalinkage of the carbazoles to the biphenyl. We obtained high triplet energies of 2.95-2.98 eV and high glass transition temperatures in the range of 100-120 °C. OLEDs were fabricated using the host material 6 and the carbene emitter Ir(dbfmi) with pure blue emission at 450 nm. The devices achieved an external quantum efficiency of 8.7% at 100 cd/m2 and 6.1% at 1000 cd/m2. MBPTRZ with an electron transporting biscarbazolyltriazine that is separated from the hole transporting carbazole by a non-conjugated, meta-linked biphenyl unit is an example for a bipolar matrix material. The excellent glass forming properties and the high Tg of 132 °C ensure morphological stability in OLEDs. The meta-linkage and the additional twist at the biphenyl unit, which is achieved by two methyl groups in the 2- and 2'-position of the biphenyl in MBPTRZ leads to a decoupling of the electron accepting and electron donating part and therefore to a high triplet energy of 2.81 eV. DFT calculations show a clear separation of the electron and hole transporting moieties. A phosphorescent OLED with MBPTRZ as host and FIrpic as emitter reached a maximum external quantum efficiency of 7.0%, a current efficiency of 16.3 cd/A and a power efficiency of 6.3 lm/W.
机译:我们为蓝磷光体提供两种主体材料。首先是咔唑取代的双苯基1-9。在这些CBP型材料中,通过使用扭曲的联烯基或通过咔唑的金属连接到联苯的咔唑的金属连接,三胞胎间三胞胎被限制在分子的一半。我们获得了高度的3.95-2.98 EV和高玻璃过渡温度,在100-120°C范围内。使用宿主材料6和卡宾发射器IR(DBFMI)制造OLED,具有450nm的纯蓝色发射。该器件在1000cd / m 2下实现了8.7%的外量子效率,在1000cd / m 2下为6.1%。 MBPTRZ具有通过非缀合的咔唑分离的电子传输的光子咔唑基三嗪,使得元连接的联苯基单元是双极基质材料的示例。优异的玻璃形成性能和132℃的高Tg确保OLED中的形态稳定性。在MBPTRZ中的双苯基的2-和2'-位置中的两种甲基在MBPTRZ中的2'-位置中实现的额外捻度导致电子接受和电子捐赠部分的去耦,因此是一种高三态能量为2.81eV。 DFT计算显示电子和空穴传输部分的清晰分离。随着MBPTRZ的磷光OLED作为宿主和FIRPIC,作为发射器的最大外部量子效率为7.0%,电流效率为16.3cd / a,功率效率为6.3升/倍。

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