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Effect of hole transporting materials on the emission characteristics of soluble processed organic light-emitting devices on the plastic substrate

机译:空穴传输材料对塑料基材上可溶性加工有机发光装置的排放特性的影响

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摘要

We have fabricated solution processed organic light-emitting devices (OLEDs) with various hole transporting materials (HTMs) on the plastic substrate. The device structure was ITO/HTM: Ir(2-phq) 3 1wt%: FIrpic 5wt % (50 nm)/TAZ (50 nm)/LiF (0.5 nm)/Al (100 nm). 4,4'-bis(carbazol9-yl) biphenyl (CBP), di-[ 4-(N, N-ditolyl- amino)-phenyl] cyclohexane (TAP C), poly[ N, N'-bis(4- butylphenyl)-N, N'-bis(phenyl)- benzidine] (poly-TPD), and poly(9-vinylcarbazole) (PVK)were used for HTM. Phosphorescent orange-red emitting Ir(2-phq)(3) and blue emitting FIrpic guest molecules were mixed with the HTMs and solvents. OLED with TAPC exhibited the maximum current efficiency of 17.4 cd/A at 0.42 mA/cm(2).
机译:我们已经制造了用塑料基板上的各种空穴传输材料(HTMS)的解决方案加工的有机发光器件(OLED)。 器件结构是ITO / HTM:IR(2-PHQ)3 1wt%:FIRPIC 5wt%(50nm)/ taz(50nm)/ LiF(0.5nm)/ Al(100nm)。 4,4'-BIS(carbazol9-基)联苯(CBP),二 - [4-(N-二丙基氨基) - 苯基]环己烷(Tap C),poly [n,n'-bis(4- 丁基苯基)-N,N'-BIS(苯基) - 苯并丁烯](Poly-TPD)和聚(9-乙烯基咔唑)(PVK)用于HTM。 磷光橙红色发射IR(2-PHQ)(3)和蓝色发光的烟雾客体分子与HTM和溶剂混合。 TAPC的OLED表现出最大电流效率为17.4mA / cm(2)。

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