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Molecular Engineering of Host Materials for High-Performance Phosphorescent OLEDs: Zig-Zag Conformation with 3D Gridding Packing Mode Facilitating Charge Balance and Quench Suppression

机译:高性能磷光OLED主体材料的分子工程:具有3D网格堆积模式的Zig-Zag构型,有利于电荷平衡和猝灭抑制

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摘要

A group of bipyridine/carbazole hybrid compounds, namely m-BPyDCz, p-BPyDCz, m-BPySCz, and p-BPySCz, are designed and developed as host materials for phosphorescent organic light-emitting diodes (PhOLEDs). By tuning the p molar ratio and para-/meta- substitution style, scorpion-, Y-, Z-, and L-shape molecular conformations are generated. In virtue of intermolecular hydrogen bonds and - interaction, these compounds form different molecular packing patterns in their single crystals. Particularly the Z-shaped m-BPySCz achieves 3D gridding packing with regular and ordered carbazole and pyridine columns as carrier hoping channels and larger intermolecular distance, which not only guarantees charge balance but also suppresses exciton quenching. Consequently the m-BPySCz hosted sky-blue and green PhOLEDs exhibit high external quantum efficiencies of 27.3% and 28.0% and low efficiency roll-offs of 8.1% (at brightness of 1000 cd m(-2) for blue) and 14.3% (at 10000 cd m(-2) for green), all superior to other analogs and many reported host materials. The excellent performance of m-BPySCz versus its lowest molecular weight and lowest amorphous stability manifests that the molecular packing style of host material dominates to determine the overall performance of PhOLEDs and the 3D gridding packing mode of zig-zag conformation may be one ideal strategy to eliminate efficiency roll-off in PhOLEDs.
机译:设计并开发了一组联吡啶/咔唑杂化化合物,即m-BPyDCz,p-BPyDCz,m-BPySCz和p-BPySCz,作为磷光有机发光二极管(PhOLED)的主体材料。通过调整p / n摩尔比和对/元取代样式,可以生成蝎子,Y,Z和L形分子构象。由于分子间的氢键和相互作用,这些化合物在其单晶中形成不同的分子堆积模式。特别是Z形m-BPySCz使用规则和有序的咔唑和吡啶色谱柱作为载流子跳跃通道和更大的分子间距离实现了3D网格填充,这不仅保证了电荷平衡,而且抑制了激子猝灭。因此,由m-BPySCz承载的天蓝色和绿色PhOLED表现出27.3%和28.0%的高外部量子效率和8.1%的低效率滚降(蓝色的1000 cd m(-2)亮度)和14.3%(以10000 cd m(-2)表示绿色),均优于其他类似物和许多报道的宿主材料。 m-BPySCz的优异性能与其最低的分子量和最低的非晶态稳定性相比,表明主体材料的分子堆积方式在决定PhOLED的整体性能方面起着主导作用,而之字形构象的3D网格堆积方式可能是一种理想的策略。消除PhOLED的效率下降。

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