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New hole blocking material for green-emitting phosphorescent organic electroluminescent devices

机译:用于发绿光的磷光有机电致发光器件的新型空穴阻挡材料

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摘要

The new amorphous molecular material, 2,5-bis(4-triphenylsilanyl-phenyl)-[1,3,4]oxadiazole, that functions as good hole blocker as well as electron transporting layer in the phosphorescent devices. The obtained material forms homogeneous and stable amorphous film. The new synthesized showed the reversible cathodic reduction for hole blocking material and the low reduction potential for electron transporting material in organic electroluminescent (EL) devices. The fabricated devices exhibited high performance with high current efficiency and power efficiency of 45 cd/A and 17.7 lm/W in 10mA/cm~2, which is superior to the result of the device using BAlq (current efficiency: 31.5 cd/A and power efficiency: 13.5 lm/W in 10 mA/cm~2) as well-known hole blocker. The ITO/DNTPD/α-NPD/6% Ir(ppy)_3 doped CBP/2,5-bis(4-tri-phenylsilanyl-phenyl)-[1,3,4]oxadiazole as both hole blocking and electron transporting layer/Al device showed efficiency of 45 cd/A and maximum brightness of 3000 cd/m~2 in 10 mA/cm~2.
机译:新的无定形分子材料2,5-双(4-三苯基甲硅烷基-苯基)-[1,3,4]恶二唑在磷光器件中起良好的空穴阻挡层和电子传输层的作用。所获得的材料形成均匀且稳定的非晶膜。新的合成方法显示了有机电致发光(EL)器件中空穴阻挡材料的可逆阴极还原作用和电子传输材料的低还原电位。所制造的器件具有高性能,高电流效率和10mA / cm〜2的功率效率为45 cd / A和17.7 lm / W,这优于使用BAlq的器件的结果(电流效率:31.5 cd / A和功率效率:10 mA / cm〜2时为13.5 lm / W),是众所周知的空穴阻挡剂。 ITO / DNTPD /α-NPD/ 6%Ir(ppy)_3掺杂的CBP / 2,5-双(4-三苯基硅烷基-苯基)-[1,3,4]恶二唑作为空穴阻挡层和电子传输层/ Al器件在10 mA / cm〜2中显示出45 cd / A的效率和3000 cd / m〜2的最大亮度。

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