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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 >New electroluminescent bipolar compounds for balanced charge-transport and tuneable colour in organic light emitting diodes:triphenylamine-oxadiazole-fluorene triad molecules
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New electroluminescent bipolar compounds for balanced charge-transport and tuneable colour in organic light emitting diodes:triphenylamine-oxadiazole-fluorene triad molecules

机译:在有机发光二极管中实现平衡的电荷传输和可调节的颜色的新型电致发光双极性化合物:三苯胺-恶二唑-芴三联体分子

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摘要

This work describes bipolar 2,5-diaryl-l,3,4-oxadiazole-fluorene hybrids which incorporate triphenylamine or carbazole units within the pi-electron system,viz.compounds 7,8,14 and 16.A related bipolar bis(oxadiazolyl)pyridine system 20 is reported.The syntheses of these five new materials are discussed,along with their optoelectronic absorption and emission properties,and their solution electrochemical redox properties.Anodic electropolymerisation of 20 was observed.Calculations using DFT (density functional theory) establish that they all possess a significantly higher HOMO energy level (by 0.60-1.02 eV) than l,3-bis[2-(4-tert-butylphenyl)-l,3,4-oxadiazol-5-yl]benzene (OXD-7) due to the presence of electron-rich amine moieties and increased conjugation lengths,thereby leading to more balanced charge-transport characteristics.Devices were fabricated by spin-coating techniques using the bipolar compounds as the emitters in the simple device architecture ITO:PEDOT-PSS:X:Ca/Al (X=7,8,14,16 or 20).The turn-on voltages were 2.9,5.5,3.6,4.5 and 3.4 V for the devices incorporating 7,8,14,16 and 20,respectively.The highest external quantum efficiency (EQE) was observed for compound 7:viz.EQE 0.36%;current efficiency 1.00 cd A~(-1);power efficiency 0.56 lm W~(-1) at 5.7 V.The EQE of the device fabricated from 8 was considerably lower than for devices using other materials due to low light emission.The EL emission peaked at lambda_(max) 430,487,487 and 521 nm for 8,14 and 16,and 7,respectively.For the 20 device lambda_(max)=521 nm and 564 nm.Thus the HOMO-LUMO gap has been modified,allowing the colour of the emitted light to vary from light blue through to green by the systematic chemical modification of the molecular subunits.The high chemical and thermal durability of these materials combined with the simplicity of the device structure and low turn-on voltages offers considerable potential for OLED applications.
机译:这项工作描述了双极性2,5-二芳基-1,3,4-恶二唑-芴杂化体,它们在pi电子系统中结合了三苯胺或咔唑单元,即化合物7,8,14和16.相关的双极性双(恶二唑基)吡啶系统20的报告。讨论了这五种新材料的合成,以及它们的光电吸收和发射性质以及溶液的电化学氧化还原性质。观察到20的阳极电聚合。使用DFT(密度泛函理论)进行的计算表明它们均具有比1,3-双[2-(4-叔丁基苯基)-1,3,4-恶二唑-5-基]苯(OXD-7)高得多的HOMO能级(0.60-1.02 eV) )由于存在富电子胺部分和增加的共轭长度,从而导致更平衡的电荷传输特性。在简单的器件架构中,采用双极性化合物作为发射极,通过旋涂技术制造了器件:ITO:PEDOT- PSS:X:Ca / Al(X = 7,8,14,1 6或20)。分别装有7,8,14,16和20的器件的开启电压分别为2.9、5.5、3.6、4.5和3.4 V.化合物7的外部量子效率最高(EQE) :EQE 0.36%;电流效率1.00 cd A〜(-1);功率效率0.56 lm W〜(-1)在5.7 V下。由8制成的器件的EQE明显低于使用其他材料的器件的EQE对于低发光,EL发射分别在8,14和16和7的lambda_(max)430,487,487和521 nm处达到峰值。对于20个设备的lambda_(max)= 521 nm和564 nm,因此HOMO-LUMO间隙已被修改,通过分子亚基的系统化学修饰,可以使发射的光的颜色从浅蓝色变为绿色。这些材料的高化学和热耐久性以及设备结构的简单性和低转弯性导通电压为OLED应用提供了巨大的潜力。

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