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Improvement of operation voltage and efficiency in inverted blue phosphorescent organic light-emitting devices

机译:倒蓝磷光有机发光器件中运行电压和效率的提高

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Inverted organic light-emitting diodes (IOLEDs) have drawn considerable attention for use in active-matrix OLED (AMOLED) displays because of their easy integration with n-channel metal-oxide-based thin film transistors (TFTs). The most crucial issue for IOLEDs is the poor electron injection caused by the bottom cathode. According to previous reports, the turn-on voltages of FIrpic-based IOLEDs are within a range from 4 to 8 V. In this study, we focus on developing bottom-emission IOLEDs with low operating voltages through the use of adequate-charge injection materials. We successfully demonstrate a turn-on voltage as low as 3.7 V for blue phosphorescent IOLEDs. The effective electron injection layers (EIL) were constructed by combining an ultrathin aluminum layer, an alkali metal oxide layer and an organic layer doped with alkali metal oxide, allowing for the effective adjustment of the carrier balance in IOLEDs. The peak efficiencies of the IOLEDs reached 15.6%, 31.8 cd/A and 23.4 lm/W. An external nanocomposite scattering layer was used to further improve light extraction efficiency. The IOLEDs equipped with the SiO_2 nanocomposite scattering layer respectively provided performance improvements of 1.3 and 1.5 times that of pristine blue phosphorescent IOLEDs at practical luminance levels of 100 cd/m~2 and 1000 cd/m~2. Through sophisticated EIL and external light-extraction structures, we obtained blue phosphorescent IOLEDs with satisfactory efficiency and low operation voltages, thereby demonstrating the great potential of nanocomposite film for application in IOLEDs.
机译:倒置有机发光二极管(IOLED)由于与基于N沟道金属氧化物基薄膜晶体管(TFT)容易地集成而绘制在活性矩阵OLED(AMOLED)显示器中。 IOLED最重要的问题是由底部阴极引起的电子注入差。根据之前的报告,基于FIRPIC的IOLED的导电电压在4至8 V的范围内。在本研究中,我们专注于通过使用适当电荷注入材料开发具有低操作电压的底部排放IOLEDS 。我们成功展示了蓝磷光IOLED的开启电压,低至3.7V。通过组合超薄铝层,碱金属氧化物层和掺杂有碱金属氧化物的有机层来构建有效电子注入层(EIL),允许有效地调整IOLED中的载体平衡。 IOLED的峰值效率达到15.6%,31.8℃/ A和23.4升/次。外部纳米复合材料散射层用于进一步提高光提取效率。配备SiO_2纳米复合材料散射层的IOLED分别提供了100cd / m〜2和1000cd / m〜2的实际亮度水平的原始蓝磷光IOLED的性能提高1.3和1.5倍。通过复杂的EIL和外部光提取结构,我们具有令人满意的效率和低操作电压的蓝磷光IOLED,从而显示纳米复合膜在IOLED中应用的巨大潜力。

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