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Synthesis of carbazole-based dendrimer: Host material for highly efficient solution-processed blue organic electrophosphorescent diodes

机译:咔唑基树枝状大分子的合成:高效溶液加工的蓝色有机电致发光二极管的主体材料

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摘要

This paper reports the synthesis and physical properties of two novel carbazole-based dendritic host materials Cz-CCP and Cz-mCP for solution-processed blue phosphorescent organic light-emitting devices (PhOLEDs). These dendritic hosts exhibit high triplet energy (≥2.85 eV), excellent film-forming ability (with low root-mean-square (rms) values less than 0.2 nm), high glass-transition temperatures in the range of 242-248 °C, and the appropriate HOMO energy levels (-5.33 - 5.35 eV) facilitating the transfer of holes from Poly(3,4-ethylenedioxythiophene):Poly(styrene-4-sulfonate) (PEDOT:PSS) to the emitting layer. The single-layer device using Cz-CCP and Cz-mCP as the host for the phosphorescence emitter iridium(III) bis(4,6-difluorophenylpyridinato)-picolinate (FIrpic) showed the maximum luminance efficiencies of 9.6 and 10.8 cd A ~(-1), respectively. By introducing a thin 1,3,5-tris(1-phenyl-1H-benzo[d]imidazol-2-yl)benzene (TPBI) electron-transporting and exciton-confining layer, the maximum efficiency of the solution-processed double-layer device based on Cz-CCP and Cz-mCP can be further improved to 20.5 and 22.7 cd A ~(-1), and maximum external quantum efficiencies as high as 10.2% and 11.5%, respectively. These results demonstrated that the newly synthesized, carbazole-based dendritic host materials are advantageous for fabrication of highly efficient blue PhOLEDs.
机译:本文报道了两种新型的咔唑基树枝状基质材料Cz-CCP和Cz-mCP的合成及其物理性质,用于溶液处理的蓝色磷光有机发光器件(PhOLED)。这些树枝状主体表现出高三重态能量(≥2.85eV),出色的成膜能力(均方根值(rms)值低于0.2 nm低),玻璃化转变温度高(242-248°C) ,以及适当的HOMO能级(-5.33-5.35 eV)有助于将空穴从聚(3,4-乙撑二氧噻吩):聚(苯乙烯-4-磺酸盐)(PEDOT:PSS)转移到发光层。使用Cz-CCP和Cz-mCP作为磷光发射体铱(III)双(4,6-二氟苯基吡啶并吡啶甲酸)-吡啶甲酸(FIrpic)的主体的单层器件显示出最大亮度效率为9.6和10.8 cd A〜( -1)。通过引入薄的1,3,5-三(1-苯基-1H-苯并[d]咪唑-2-基)苯(TPBI)电子传输和激子约束层,溶液处理的最大效率基于Cz-CCP和Cz-mCP的多层器件可以进一步提高到20.5和22.7 cd A〜(-1),并且最大外部量子效率分别高达10.2%和11.5%。这些结果表明,新合成的基于咔唑的树状主体材料有利于高效蓝色PhOLED的制造。

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