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High efficiency blue phosphorescent organic light emitting diodes

机译:高效蓝磷光有机发光二极管

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Organic light emitting devices (OLEDs) have demonstrated the potential for solid state lighting as well as full color display applications. Use of triplet harvesting phosphorescent materials has led to very high efficiency OLEDs especially in green and red phosphorescent OLEDs. However in case of blue OLEDs the efficiency achieved is still room for improvement. Charge balance is a very important factor for achieving high efficiency organic light emitting diodes. In most OLED devices, hole mobility of hole transport layer is orders of magnitude higher than the electron mobility of electron transport layer. We study how this affects the charge balance and hence the device performance in the blue phosphorescent OLEDs with Iridium (III)bis [(4,6-di-fluorophenyl)- pyridinato-N,C2'] picolinate (Flrpic) emitter. Charge balance is studied in these devices and the devices are found to be hole dominant. Additionally, effect of charge balance on device performance is demonstrated with different electron transport layers. Using this approach, a very high efficiency of 60 Cd/A (50 lm/W) is achieved with 3,5 '-N,N'-dicarbazole-benzene (mCP) host.
机译:有机发光器件(OLED)已经证明了固态照明的可能性以及全彩色显示器应用。使用三重态收获磷光材料导致非常高的效率OLED,尤其是绿色和红色磷光OLED。然而,在蓝色OLED的情况下,所取得的效率仍然是改进的余地。电荷平衡是实现高效有机发光二极管的一个非常重要的因素。在大多数OLED器件中,空穴传输层的空穴迁移率是高于电子传输层的电子迁移率的数量级。我们研究这将如何影响电荷平衡,从而利用铱(III)双[(4,6-二氟苯基) - 吡啶基 - N,C2']吡啶酸盐(FLRPIC)发射器中的蓝磷光OLED中的装置性能。在这些设备中研究了充电平衡,发现设备是洞中的漏洞。另外,用不同的电子传输层对电荷平衡对装置性能的影响。使用这种方法,用3,5'-N,N'-二氨基咔唑 - 苯(MCP)宿主实现非常高的60cd / A(50lm / w)。

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