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首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Colour tuning of blue electroluminescence using bipolar carbazole-oxadiazole molecules in single-active-layer organic light emitting devices (OLEDs)
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Colour tuning of blue electroluminescence using bipolar carbazole-oxadiazole molecules in single-active-layer organic light emitting devices (OLEDs)

机译:在单活性层有机发光器件(OLED)中使用双极性咔唑-恶二唑分子对蓝色电致发光进行颜色调节

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摘要

A synthetically versatile strategy has been employed for luminescence colour tuning in a new series of bipolar carbazole-2,5-diaryl-1,3,4-oxadiazole hybrid molecules 1-7. Their syntheses, solution absorption and emission properties and cyclic voltammetric data are reported. Calculations using DFT (density functional theory) establish that they possess molecular orbitals which favour bipolar charge-transport. Single-active-layer organic light emitting devices (OLEDs) have been fabricated by thermal evaporation using the bipolar compounds as the emitters in the architecture ITO:PEDOT-PSS:X:Ca/Al (X = 1-7). The structure-property relationships within the series of compounds are assessed with emphasis on the OLED performance and emission colour. The HOMO-LUMO gap has been varied by systematic modifications of the molecular subunits of 1-7, allowing the colour of the electroluminescence to be tuned from deep blue (CIE x,y 0.157,0.079) through to green (CIE x,y 0.151, 0.096). These materials are very attractive for further development due to the combination of good processability of the molecules, their bipolar structure, colour tunability and efficient performance of OLEDs using a simple device architecture.
机译:在一系列新的双极性咔唑-2,5-二芳基-1,3,4-恶二唑杂化分子1-7中,采用了一种合成通用策略来进行发光颜色调整。报告了它们的合成,溶液吸收和发射性质以及循环伏安数据。使用DFT(密度泛函理论)进行的计算表明,它们具有有利于双极性电荷传输的分子轨道。在结构ITO:PEDOT-PSS:X:Ca / Al(X = 1-7)中,通过使用双极性化合物作为发射极通过热蒸发法制造了单活性层有机发光器件(OLED)。评估系列化合物内的结构-特性关系,重点放在OLED性能和发射颜色上。通过对1-7分子亚基的系统修饰,改变了HOMO-LUMO间隙,从而使电致发光的颜色从深蓝色(CIE x,y 0.157,0.079)变为绿色(CIE x,y 0.151)。 ,0.096)。这些材料由于具有良好的分子可加工性,其双极结构,颜色可调性以及使用简单设备架构的OLED的高效性能,因此对于进一步开发非常有吸引力。

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