首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Controllably tunable phenanthroimidazole-carbazole hybrid bipolar host materials for efficient green electrophosphorescent devices
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Controllably tunable phenanthroimidazole-carbazole hybrid bipolar host materials for efficient green electrophosphorescent devices

机译:可控可调的菲并咪唑-咔唑杂化双极性主体材料,用于高效绿色电致磷光器件

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A series of phenanthroimidazole-carbazole (1 : 2) hybrids as bipolar host materials have been designed and synthesized through facile typical Ullmann reactions. These compounds with rigid configurations exhibit excellent thermal and morphological stabilities with high glass transition temperatures (f_g) (143282 °C). Their photoelectronic properties, energy levels, charge transport mobility, and film morphologies can be controllably tuned through judicious engineering of the linkage modes between the two carbazole groups and the 2,5-diphenyl-1,3,4-phenanthroimidazole (para and meta). The promising physical properties of these new compounds make them suitable for use as hosts doped with Ir-based phosphor for realizing highly efficient phosphorescent organic light emitting diodes (PhOLEDs). A green device hosted by compound PhBIDmpCP shows a maximum current efficiency of 74.3 cd A~(-1) and a maximum power efficiency of 74.4 Im W_(-1) (corresponding EQE_(max) = 20.2%).
机译:通过简便的典型Ullmann反应,设计并合成了一系列菲胺咪唑-咔唑(1:2)杂化物作为双极宿主材料。这些具有刚性构型的化合物在高玻璃化转变温度(f_g)(143282°C)下表现出出色的热稳定性和形态稳定性。通过明智地设计两个咔唑基团与2,5-二苯基-1,3,4-菲并咪唑(对位和间位)之间的连接方式,可以控制地调节它们的光电性能,能级,电荷迁移率和薄膜形态。 。这些新化合物的有前途的物理性质使其适合用作掺杂Ir基磷光体的主体,以实现高效的磷光有机发光二极管(PhOLED)。由化合物PhBIDmpCP托管的绿色设备显示的最大电流效率为74.3 cd A〜(-1),最大功率效率为74.4 Im W _(-1)(对应的EQE_(max)= 20.2%)。

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