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Novel 2,4-difluorophenyl-functionalized arylamine as hole-injecting/hole- transporting layers in organic light-emitting devices

机译:新型2,4-二氟苯基官能化的芳基胺作为有机发光器件中的空穴注入/空穴传输层

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摘要

Novel 2,4-difluorophenyl-functionalized triphenylamine and its dimer, namely tris(2′,4′-difluorobiphenyl-4-yl)-amine (3FT) and N ~4,N ~4,N ~4′,N ~4′-tetrakis- (2′,4′-difluorobiphenyl-4-yl)-biphenyl-4,4′-diamine (4FDT), have been synthesized and characterized. The device with the configuration of ITO/4FDT/Alq _3/LiF/Al yields maximum current efficiency of 4.3 cd/A. Moreover, with 4FDT as the hole-injecting layer, the maximum efficiency and luminance of the device was further improved to be 5.0 cd/A and 19 880 cd/m 2, respectively. The good performance of devices with 4FDT as HTL or HIL was attributed to the incorporation of the strong electron-withdrawing fluorinated substituents into the arylamine moiety, which reduced holes mobility of HTL and HIL and then balanced the injected carriers in devices.
机译:新型2,4-二氟苯基官能化的三苯胺及其二聚体,即三(2',4'-二氟联苯-4-基)-胺(3FT)和N〜4,N〜4,N〜4',N〜4合成了'-四-(2',4'-二氟联苯-4-基)-联苯-4,4'-二胺(4FDT)。配置为ITO / 4FDT / Alq _3 / LiF / Al的设备产生的最大电流效率为4.3 cd / A。此外,通过将4FDT用作空穴注入层,器件的最大效率和亮度进一步提高到分别为5.0 cd / A和19 880 cd / m 2。具有4FDT作为HTL或HIL的器件的良好性能归因于将强大的吸电子氟化取代基并入芳基胺部分,这降低了HTL和HIL的空穴迁移率,从而平衡了器件中注入的载流子。

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