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A Novel Triplet Green Host System and Charge Balance Tuning for High Performance Singlet Blue Devices

机译:高性能单态蓝色设备的新型三联绿色主机系统和电荷余额调整

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Our former findings on the charge balance in blue fluorescent devices show a clear connection between the basic performance parameters: Efficiency and lifetime both show an optimum with respect to voltage. Unfortunately, for devices using a conventional hole injection and NPB as hole transport material, the optimum values do not occur at the same voltage. Moreover, the optimum voltage for lifetime is much higher than that for optimum efficiency. After investigating the underlying charge balance issues, we developed new stack layouts and hole transport materials to shift the lifetime optimum to lower voltage values. Using an appropriate hole injection layer and one of our latest hole transport materials, we can now combine excellent lifetime, low voltage and good efficiency in one fluorescent blue device. In addition, we obtain 10% EQE by carefully tuning the hole transport side in fluorescent blue devices. No special hole blocking layer is required to obtain this high efficiency. For green phosphorescent devices, we developed a thermally stable co-host material which allows for the use of low emitter concentrations in the range of 5% without sacrificing device performance. We combine this material with an electron transporting host that shows a slight initial rise in lifetime when a low emitter concentration is employed. Due to these features, the tuning of the host mixing ratio results in excellent LT95 values in combination with good voltage, efficiency and low efficiency roll-offfor high luminance.
机译:我们以前关于蓝色荧光装置的电荷平衡的发现显示了基本性能参数之间的明确连接:效率和寿命都显示出相对于电压的最佳选择。遗憾的是,对于使用传统空穴注入的装置和作为空穴传输材料的器件,最佳值不会发生在相同的电压下。此外,寿命的最佳电压远高于最佳效率的电压。在调查潜在的抵押余额问题后,我们开发了新的堆栈布局和空穴传输材料,以将寿命的最佳值移至更低的电压值。使用适当的空穴注入层和我们的最新孔输送材料之一,我们现在可以将优异的寿命,低电压和良好的效率结合在一个荧光蓝色器件中。此外,我们通过仔细调整荧光蓝器件的孔输送侧来获得10%的EQE。不需要特殊的孔阻挡层来获得这种高效率。对于绿色磷光器件,我们开发了一种热稳定的共同主体材料,其允许在5%范围内使用的低发射极浓度而不会牺牲装置性能。我们将这种材料与电子传输宿主结合起来,当采用低发射极浓度时,电子传输宿主显示寿命略微上升。由于这些特征,宿主混合比的调谐导致优异的LT95值与良好的电压,效率和低效率滚动的高亮度。

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