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首页> 外文期刊>Dyes and Pigments >Structural isomers of 9-(pyridin-2-yl)-9H-carbazole in combination with 9 ' H-9,3 ':6 ',9 ''-tercarbazole and their application to high efficiency solution processed green TADF OLEDs
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Structural isomers of 9-(pyridin-2-yl)-9H-carbazole in combination with 9 ' H-9,3 ':6 ',9 ''-tercarbazole and their application to high efficiency solution processed green TADF OLEDs

机译:9-(吡啶-2-基)-9H-咔唑的结构异构体与9'H-9,3':6',9'' - 咔唑组合,并应用于高效溶液加工绿色TADF OLED

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摘要

Two host materials, CzPy2TCz and CzPy3TCz, were designed as structural isomers and synthesized to achieve high efficiency thermally activated delayed fluorescence-organic light emitting diodes (TADF-OLEDs). The design strategy involved introducing a pyridine group into the core structure as an electron-withdrawing unit and varying the substitution position of tercarbazole (TCz). To realize green TADF-OLED, the two host materials synthesized in this study have excellent thermal stability and high excited triplet energy (T-1 = 2.95-2.98 eV). The maximum external quantum efficiency and current efficiency values for CzPy2TCz were 23.81% and 80.2 cd/A, respectively and the respective values for CzPy3TCz were 20.27% and 70.1 cd/A, respectively. Structural isomers with carbazole (Cz) and TCz units at the 2,6-position of the pyridine core effectuate better device performance. Consequently, we found that the host materials introduced in this study play an important role in implementing high performing solution-processed green TADF-OLED.
机译:两个主体材料,CZPY2TCZ和CZPY3TCZ设计为结构异构体并合成以实现高效热活化的延迟荧光 - 有机发光二极管(TADF-OLED)。设计策略涉及将吡啶基团引入核心结构中作为电子取出单元并改变甘露咔唑(TCZ)的替代位置。为了实现绿色Tadf-OLED,本研究合成的两个主体材料具有优异的热稳定性和高兴奋的三重态能量(T-1 = 2.95-2.98eV)。 CZPY2TCZ的最大外部量子效率和电流效率值分别为23.81%和80.2dC / A,分别为CZPy3TCZ的相应值分别为20.27%和70.1dd / a。在吡啶芯的2,6位的咔唑(CZ)和TCZ单元的结构异构体效应了更好的装置性能。因此,我们发现本研究中介绍的主体材料在实施高性能的溶液加工的绿色TADF-OLED方面发挥着重要作用。

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