...
首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Oxadiazole based bipolar host materials employing planarized triarylamine donors for RGB PHOLEDs with low efficiency roll-off
【24h】

Oxadiazole based bipolar host materials employing planarized triarylamine donors for RGB PHOLEDs with low efficiency roll-off

机译:基于恶二唑的双极性主体材料,采用平面化的三芳基胺供体用于RGB PHOLED,具有低效率滚降

获取原文
获取原文并翻译 | 示例

摘要

A series of 6 hovel triarylamine-containing oxadiazole compounds (o-PCzPOXD, o-ICzPOXD, o-TPATOXD, o-PCzTOXD, o-ICzTOXD, o-CzTOXD) have been designed, synthesized and characterized concerning applications as host materials in PHOLED devices. To further improve the ortho-linkage concept, the impact of incorporating planarized electron-donating triarylamine (TAA) structures on intramolecular charge transfer was examined. The effect was evaluated for two series of electron-accepting oxadiazole scaffolds, realizing ortho-linkage on the benzene (POXD) and the thiophene (TOXD) cores. Thermal analysis shows increased glass-transition temperatures for planarized structures indicating an improved morphological stability. A higher degree of planarization also results in significantly increased singlet and triplet energy values, revealing the impact on the intramolecular charge transfer. Employing the developed materials, red (o-TPATOXD: CE_(max): 28.8 cd A~(-1), EQE_(max): 16.9%), green (o-PCzPOXD: CE_(max): 62.9 cd A~(-1), EQE_(max): 17.1%) and blue (o-PCzPOXD: CE_(max): 29.8 cd A~(-1), EQE_(max): 13.4%) devices were achieved showing remarkably low efficiency roll-off for planarized donors. Hence, this is the first report of efficient blue devices for this specific class of host materials. It is proposed that the results correlate with an increasing ortho-linkage effect and decreasing donor strength of the TAA moiety by planarization and, thus, tackling one of the major challenges in PHOLED research: improving both triplet energy and compound stability.
机译:已设计,合成和表征了一系列6种含三甲胺三甲胺的恶二唑化合物(o-PCzPOXD,o-ICzPOXD,o-TPATOXD,o-PCzTOXD,o-ICzTOXD,o-CzTOXD),并作为PHOLED器件中的基质材料进行了应用。为了进一步改善邻位键合概念,研究了引入平面化的供电子三芳基胺(TAA)结构对分子内电荷转移的影响。评估了两个电子接受的恶二唑支架的效果,实现了在苯(POXD)和噻吩(TOXD)核上的邻位键合。热分析表明,平面化结构的玻璃化转变温度升高,表明形态稳定性得到改善。较高的平面化程度还导致单线态和三线态能量值显着增加,从而揭示了对分子内电荷转移的影响。使用开发的材料,红色(o-TPATOXD:CE_(max):28.8 cd A〜(-1),EQE_(max):16.9%),绿色(o-PCzPOXD:CE_(max):62.9 cd A〜( -1),EQE_(max):17.1%)和蓝色(o-PCzPOXD:CE_(max):29.8 cd A〜(-1),EQE_(max):13.4%)的器件显示出明显的低效率滚动-对于平面化的捐助者。因此,这是针对此类特定宿主材料的高效蓝色设备的首次报道。有人提出,该结果与通过平面化提高TAA部分的邻位键合效应和降低供体强度有关,因此解决了PHOLED研究中的主要挑战之一:改善三线态能量和化合物稳定性。

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