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A novel series of efficient thiophene-based light-emitting conjugated polymers and application in polymer light-emitting diodes

机译:一系列新型高效的噻吩基发光共轭聚合物及其在聚合物发光二极管中的应用

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A novel series of soluble conjugated polymers, poly[1,4-bis(4-alkyl-2-thienyl)-2,5-disubstituted phenylene]s, with different substituents on the phenylene ring (hydrogen, methyl group, or decyloxy group) and on the thiophene ring (n-hexyl chain or cyclohexyl group) were synthesized through FeCl3-oxidative polymerization. The structures of the polymers were fully verified by FT-IR, H-1 and C-13 NMR, and element analysis. The high regioregularity of head-to-head linkage between two adjacent thiophene rings in the polymers was demonstrated. The electronic spectra of the polymers can be tuned by changing the substitution on both the phenylene and thiophene rings, emitting blue to green light. The electronic structures of the polymers can also be tuned by different substitutions, as demonstrated by electrochemical measurements (cyclic voltammetry). The absolute photoluminescence (PL) efficiencies of the polymers in neat films, which can be remarkably effected by the substitution on both the phenylene ring and the thiophene ring, can be up to 29%, much higher than the PL efficiencies in other polythiophene-based light-emitting materials. It was demonstrated that inserting substituted phenylene rings into the backbone of polythiophene is a useful approach to improve the PL efficiency of thiophene-based conjugated polymers. Blue to green electroluminescence (EL) was realized from some of the new polymers in single-layered light-emitting diodes with the configuration of ITO/polymer film/Ca or Al. One green light-emitting diode fabricated from the green-emissive polymer with the highest PL efficiency gave rise to the best EL performance, turning on at similar to 8V and reaching an external EL quantum efficiency of 0.1%. [References: 45]
机译:一系列新的可溶性共轭聚合物,聚[1,4-双(4-烷基-2-噻吩基)-2,5-二取代的亚苯基],在亚苯基环上具有不同的取代基(氢,甲基或癸氧基) )和噻吩环(正己基链或环己基)上通过FeCl3氧化聚合而合成。通过FT-IR,H-1和C-13 NMR以及元素分析充分验证了聚合物的结构。证明了聚合物中两个相邻的噻吩环之间的头对头键具有很高的区域规则性。可以通过改变亚苯基和噻吩环上的取代基来调节聚合物的电子光谱,从而发出蓝色至绿色的光。聚合物的电子结构也可以通过不同的取代来调节,如电化学测量(循环伏安法)所证明的。可以通过亚苯基环和噻吩环上的取代显着影响的纯膜中聚合物的绝对光致发光(PL)效率可高达29%,远高于其他基于聚噻吩的聚合物的PL效率发光材料。已证明将取代的亚苯基环插入聚噻吩的骨架中是提高基于噻吩的共轭聚合物的PL效率的有用方法。在具有ITO /聚合物膜/ Ca或Al的单层发光二极管中,某些新型聚合物实现了蓝绿色电致发光(EL)。一种由具有最高PL效率的绿色发射聚合物制成的绿色发光二极管产生了最佳的EL性能,其在接近8V的电压下导通并达到0.1%的外部EL量子效率。 [参考:45]

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