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Highly Efficient Red Light-Emitting Devices Using Copolymer Containing Charged Iridium Complex in the Side Chain

机译:高效的红色发光器件使用侧链中含有带电铱络合物的共聚物

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Red emission was achieved in electroluminescent devices by using a novel charged Ir-copolymer. The electroluminescent device, with the configuration of ITO/PEDOT:PSS/Ir-copolymer/Au, exhibited the characteristics of light-emitting electrochemical cell (LEC), in which the redistribution of ions resulted in the ionic junction. The maximum external quantum efficiency (EQE) of 0.19 % and the maximum luminance of 352 cd/m~2 were obtained after the device was driven to the maximum luminance at 7V. When aluminum (Al) was used as cathode, the maximum EQE of 0.15 % and the maximum luminance of 340cd/m~2 were achieved, which were comparable with the results from the Au cathode device. After a 30nm thick TPBI (1,3,5-tris(2-N-phenylbenzimidazolyl)-benzene layer was inserted between light emitting layer and the Al cathode, the device performances were significantly enhanced. The maximum EQE and the maximum luminance reached 10.7 % and 2170 cd/m~2, respectively, a more than 10 fold increase compared to the devices without TPBI layer. The TPBI layer not only functioned as hole blocking layer which made holes and electrons more balanced inside the device, but also moved the recombination zone away from the cathode, thereby enhancing the device performances.
机译:通过使用新型带电的红外共聚物在电致发光器件中实现红色发射。具有ITO / PETOT:PSS / IR-共聚物/ Au的配置的电致发光器件表现出发光电化学电池(LEC)的特性,其中离子的再分配导致离子结。在7V下驱动到最大亮度之后,获得了0.19%的最大外部量子效率(EQE)和352cd / m〜2的最大亮度。当铝(Al)用作阴极时,实现了0.15%的最大EQE,并且实现了340℃/ m〜2的最大亮度,与Au阴极器件的结果相当。在发光层和Al阴极之间插入30nm厚的TPBI(1,3,5-Tris(2-N-苯基苯并咪唑基) - 苯并层后,器件性能明显增强。最大EQE和最大亮度达到10.7与没有TPBI层的器件相比,分别为20%和2170cd / m〜2。TPBI层不仅用作空洞阻挡层,它使孔和电子更加平衡在装置内,而且也移动了重组区域远离阴极,从而增强装置性能。

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