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Peripheral cyanohexyl substituent in wide bandgap polymer: Increase the electron injection property for blue phosphorescence light emitting device

机译:宽带隙聚合物中的外围氰基己基取代基:提高蓝色磷光发光器件的电子注入性能

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摘要

Novel blue phosphor host, PCNCzSi, using 3,6-linked carbazole with δ-π tetraphenylsilane segment as the main chain modified by peripheral cyanohexyl group was designed. The Si-carbazole backbone entitles the polymer with wide bandgap, high E_T and good hole transporting ability. The introduction of peripheral CN group with high electron affinity enhances the electron injecting property of the polymer revealed by electron-only device and UPS measurement. Highly efficient spin-coated phosphorescent polymer light-emitting device, using PCNCzSi as the host for blue iridium complex, FIrpic, was realized. The maximum luminous efficiency and maximum external quantum efficiency of the device were 15 cd/A and 6.7%, respectively, which are very high values for blue phosphorescent device using polymers as hosts as known. Cyano group, which possesses strong electron-withdrawing property, was attached on the hexyl side chain to obtain wide band gap polymer, PCNCzSi. Highly efficient spin-coated phosphorescent polymer light-emitting device, using PCNCzSi as the host for blue iridium complex FIrpic was prepared, and the maximum luminous efficiency and maximum external quantum efficiency of the devices were reached to 15 cd/A and 6.7%, respectively.
机译:设计了一种新型的蓝色磷光体主体PCNCzSi,它使用由δ-π四苯基硅烷链段作为3,6-键联的咔唑作为主链,并被外围的氰基己基改性。 Si-咔唑主链赋予聚合物宽禁带,高E_T和良好的空穴传输能力。引入具有高电子亲和力的外围CN基团可增强纯电子装置和UPS测量所揭示的聚合物的电子注入性能。实现了以PCNCzSi为主体的蓝色铱复合物FIrpic的高效旋涂磷光聚合物发光器件。器件的最大发光效率和最大外部量子效率分别为15 cd / A和6.7%,对于以聚合物为主体的蓝色磷光器件而言,这是非常高的值。将具有强吸电子性能的氰基连接到己基侧链上,以获得宽带隙聚合物PCNCzSi。制备了以PCNCzSi为主体的高效旋涂磷光聚合物发光器件,用于蓝铱配合物FIrpic的制备,器件的最大发光效率和最大外部量子效率分别达到15 cd / A和6.7%。 。

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