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Phenothiazine and carbazole substituted pyrene based electroluminescent organic semiconductors for OLED devices

机译:OLED器件中的吩噻嗪和咔唑取代的based基电致发光有机半导体

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摘要

Due to their easy availability, low cost and opportunities for exploiting reactions of bromo substituents, 1,3,6,8-tetrabromopyrene has attracted major attention in the organic electronics community for designing and constructing novel classes of pyrene based organic semiconducting functional materials. In the present work, 1,3,6,8-tetrabromo pyrene was transformed into the corresponding tetrasubstituted carbazole and phenothiazine derivatives using the classical Suzuki coupling reaction. These newly synthesized materials with a carbazole substituent (PY-CA) and a phenothiazine substituent (PY-PH) were characterised thoroughly and were successfully used as an active light-emitting layer in organic light emitting diodes which resulted in blue and green emission with promising device performance. PY-CA exhibited the maximum brightness at around 2500 cd m−2 and the power efficiency of 1.5 lm W−1 while that of PY-PH exhibited 2116 cd m−2 and 0.45 lm W−1 respectively.
机译:由于其容易获得,成本低廉和利用溴取代基反应的机会,因此,1,3,6,8-四溴py在设计和构建新颖的classes类有机半导体功能材料方面引起了有机电子界的广泛关注。在本工作中,使用经典的Suzuki偶联反应将1,3,6,8-四溴br转化为相应的四取代咔唑和吩噻嗪衍生物。这些新合成的具有咔唑取代基(PY-CA)和吩噻嗪取代基(PY-PH)的材料得到了充分表征,并成功地用作有机发光二极管中的有源发光层,产生了蓝色和绿色的发光,前景光明。设备性能。 PY-CA的最大亮度约为2500 cd m-2,功率效率为1.5 lm W-1,而PY-PH的功率效率分别为2116 cd m-2和0.45 lm W-1。

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