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Spirophenylacridine-2,7-(diphenylphosphineoxide)-fluorene: A Bipolar Host for High-Efficiency Single-Layer Blue Phosphorescent Organic Light-Emitting Diodes

机译:Spirophenylacridine-2,7-(diphenylphosphineoxide)-芴:高效单层蓝色磷光有机发光二极管的双极性主体。

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摘要

Herein, a high-efficiency host material for single-layer phosphorescent organic light-emitting diodes (SL-PhOLEDs) is reported. This host material is synthesized via an efficient approach and is constructed on the association of an electron-rich phenylacridine unit connected by a spiro carbon atom to an electron-deficient 2,7-bis(diphenylphosphineoxide)-fluorene. In addition to a high E-T value and adequate highest occupied molecular orbital/lowest unoccupied molecular orbital energy levels, the key point in this molecular design is the suitable balance between hole and electron mobilities, which leads to a high-performance blue SL-PhOLED with an external quantum efficiency of 17.6% (current efficiency = 37.8 cd A(-1) and power efficiency = 37.1 lm W-1) and a low V-on of 2.5 V. This performance shows that the molecular design of the present host fulfills the criteria required for high-efficiency SL-PhOLEDs. The present performance is one of the highest reported to date for blue SL-PhOLEDs and more importantly shows the potential of such a molecular design to reach very high-performance single-layer devices.
机译:在此,报道了用于单层磷光有机发光二极管(SL-PhOLED)的高效主体材料。该主体材料是通过有效的方法合成的,并基于通过螺碳原子连接的富电子苯基phenyl啶单元与缺电子的2,7-双(二苯基氧化膦)-芴的缔合而构建。除了较高的ET值和足够高的最高占据分子轨道/最低最低未占据分子轨道能级之外,此分子设计的关键点还在于空穴和电子迁移率之间的适当平衡,这导致了高性能的蓝色SL-PhOLED具有外部量子效率为17.6%(电流效率= 37.8 cd A(-1),功率效率= 37.1 lm W-1)和2.5 V的低导通电压。该性能表明本发明的分子设计可满足高效SL-PhOLED所需的标准。目前的性能是迄今为止报道的蓝色SL-PhOLED的最高性能之一,更重要的是,它表明了这种分子设计在实现超高性能单层器件方面的潜力。

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