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Organic Synthesis and Characteristics of Novel Conjugated Polymers with Cyano Group and Carbazole Unit for AMOLEDs

机译:氰基和咔唑单元的新型共轭聚合物用于AMOLEDs的有机合成及特性

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The present investigation deals with the synthesis, characterization and EL of new copolymers, CzCNPFVl, CzCNPFV2 and CzCNPFV3 by Knoevcnagcl condensation reaction. The CzCNPFVs was synthesized for promoted efficiency of reported CNPFV. The PL emission spectra of the CzCNPFVs in chloroform solution show maximum peaks at 476 ~ 479 nm. In thin films, maximum peaks of the CzCNPFVs appeared at 501 ~ 504 nm, red-shifted around 25 nm as compared to that in solution. The more negative energy of the LUMO of CzCNPFVl or CzCNPFV2 indicates the electron injection process is easier than in CNPFV. From this result, higher quantum efficiency of CzCNPFVl or CzCNPFV2 as compared to that of CNPFV can be expected due to its improved electron injection ability from the cathode.
机译:本研究研究了通过Knoevcnagcl缩合反应合成的新型共聚物CzCNPFV1,CzCNPFV2和CzCNPFV3的合成,表征和EL。合成CzCNPFV是为了提高报道的CNPFV的效率。 CzCNPFVs在氯仿溶液中的PL发射光谱在476〜479 nm处显示最大峰。在薄膜中,与溶液相比,CzCNPFVs的最大峰出现在501〜504 nm处,在25 nm处发生红移。 CzCNPFV1或CzCNPFV2的LUMO的负能量更大,表明电子注入过程比CNPFV中的注入过程更容易。根据该结果,由于CzCNPFV1或CzCNPFV2从阴极的电子注入能力提高,因此可以期待与CNPFV相比具有更高的量子效率。

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