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首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Synthesis and Properties of Nitrogen-Linked Poly(2,7-carbazole)s as Hole-Transport Material for Organic Light Emitting Diodes
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Synthesis and Properties of Nitrogen-Linked Poly(2,7-carbazole)s as Hole-Transport Material for Organic Light Emitting Diodes

机译:氮连接的聚(2,7-咔唑)作为有机发光二极管空穴传输材料的合成及性能

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摘要

A novel class of carbazole polymers, nitrogen-linked poly(2,7-carbazole)s, was synthesized by polycondensation between two bifunctional monomers using the palladium-catalyzed amination reaction. The polymers were characterized by H-1 NMR, Infrared, Gel permeation chromatography, and MALDI-TOF MS and it was revealed that the combination of the monomer structures is important for producing high molecular weight polymers. Thermal analysis indicated a good thermal stability with high glass transition temperatures, e.g., 138 degrees C for the higher molecular weight polymer P2. To pursue the application possibilities of these polymers, their optical properties and energy levels were investigated by UV-Vis absorption and fluorescence spectra as well as their electrochemical characteristics. Although the blue light emission was indeed observed for all polymers in solution, the quantum yields were very low and the solid films were not fluorescent. On the other hand, the HOMO levels of the polymers estimated from the onset potentials for the first oxidation in the solid thin films were relatively high in the range of -5.12 to -5.20 eV Therefore, light emitting diodes employing these polymers as a hole-transport layer and iridium(III) complex as a triplet emitter were fabricated. The device of the nitrogen-linked poly(2,7-carbazole) P3 with p,p'-biphenyl spacer, which has a higher HOMO level and a higher molecular weight, showed a much better performance than the device of P2 with m-phenylene spacer.
机译:通过钯催化的胺化反应,通过两个双官能单体之间的缩聚反应,合成了一类新型的咔唑聚合物,即氮连接的聚(2,7-咔唑)。通过H-1 NMR,红外,凝胶渗透色谱和MALDI-TOF MS对聚合物进行表征,结果表明,单体结构的结合对于生产高分子量聚合物很重要。热分析表明在高玻璃化转变温度下,例如对于较高分子量的聚合物P2为138℃,具有良好的热稳定性。为了追求这些聚合物的应用可能性,通过紫外-可见吸收和荧光光谱以及它们的电化学特性研究了它们的光学性质和能级。尽管确实观察到溶液中所有聚合物的蓝光发射,但是量子产率非常低,并且固体膜没有荧光。另一方面,根据固体薄膜中第一次氧化的起始电位估算出的聚合物的HOMO水平在-5.12至-5.20 eV的范围内相对较高。因此,使用这些聚合物作为空穴的发光二极管制备了传输层和铱(III)配合物作为三重态发射极。具有较高HOMO水平和较高分子量的带有p,p'-联苯间隔基的氮连接聚(2,7-咔唑)P3的装置表现出比具有m-P-的P2装置更好的性能。亚苯基间隔基。

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