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Bromine-substituted triphenylamine derivatives with improved hole-mobility for highly efficient green phosphorescent OLEDs with a low operating voltage

机译:具有改进的空穴迁移率的溴取代的三苯胺衍生物,用于具有低工作电压的高效绿色磷光OLED

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摘要

Charge transport materials play a crucial role in organic light-emitting diodes (OLEDs) due to their effect on reducing the operating voltage and enhancing the power efficiency. To develop hole transport materials with improved hole-mobility, two novel bromine-substituted triphenylamine derivatives: ((4-bromo-phenyl)-bis-(4-quinolin-8-yl-phenyl)-amine) Br-DQTPA and (9,9-bis-(4-triphenyl-amine)-2,7-dibromo-9H-fluorene) Br-DTF were designed and synthesized. The hole mobilities of Br-DQTPA and Br-DTF show one order of magnitude enhancement compared with non-brominated (phenyl-bis(4-quinolin-8-yl-phenyl)-amine) DQTPA and (9,9-bis-(4-triphenyl-amine)-9H-fluorene) DTF under the same electric field. Attributed to their improved hole mobilities, traditional green phosphorescent OLEDs that use Br-DQTPA or Br-DTF as a hole transport material both show an ultralow operating voltage at 1 cd m(-2) (below 2.4 V) and very high luminous efficiencies (over 21% and 90 lm W-1) without light outcoupling improvement. Those results are much better than those of DQTPA-, DTF-, and even NPB-based green devices, indicating that bromine-substitution is a promising and convenient way to achieve novel hole transport materials with improved hole-mobility.
机译:电荷传输材料由于在降低工作电压和提高功率效率方面的作用,在有机发光二极管(OLED)中起着至关重要的作用。为了开发具有改善的空穴迁移率的空穴传输材料,两种新型的溴取代的三苯胺衍生物:(((4-溴-苯基)-双-(4-喹啉-8-基-苯基)-胺)Br-DQTPA和(9设计合成了9,9-双-(4-三苯基-胺)-2,7-二溴-9H-芴)Br-DTF。 Br-DQTPA和Br-DTF的空穴迁移率与非溴化(苯基-双(4-喹啉-8-基-苯基)-胺)DQTPA和(9,9-bis-(在相同电场下的4-三苯胺)-9H-芴)DTF。归功于它们提高的空穴迁移率,使用Br-DQTPA或Br-DTF作为空穴传输材料的传统绿色磷光OLED都显示出1 cd m(-2)(低于​​2.4 V)的超低工作电压和非常高的发光效率(超过21%和90 lm W-1的光束),而没有改善光耦合。这些结果比基于DQTPA,DTF和甚至基于NPB的绿色器件要好得多,这表明溴取代是获得具有改善的空穴迁移率的新型空穴传输材料的一种有前途且方便的方法。

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