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Electrical and optical properties of an alcohol soluble aminoalkyl-substituted cationic conjugated polymer

机译:醇溶性氨基烷基取代的阳离子共轭聚合物的电学和光学性质

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The optical and electrical properties of a novel alcohol soluble aminoalkyl-substituted cationic conjugated polymer, poly[9,9'-bis(6"-(C-(N,N,N-trimethylammonium)-hexyl)fluorene-co-alt-2,5-dimethoxy-1,4-phenylene dibromide] (PFPB), has been studied using absorption, photoluminescence, current-voltage-luminescence (J-V-L), and noise characterization techniques. The absorption and photoluminescence studies show that PFPB is blue-emitting, and its long alkyl side chains and two methoxy side chains introduce steric hindrance in the structure, which can minimize interchain interactions. The photoluminescence quantum efficiency of PFPB in methanol was found to be 69.6%. Polymer light emitting diodes (PLEDs) were fabricated using PFPB as an electron injection layer and device physics has been studied. The obtained device results indicate that PFPB can be used as an electron transport layer (ETL) to improve the PLED performance. The noise characteristics on the PLED devices show that the interface between the cathode and the emissive layer is improved through the introduction of a PFPB layer. Results in this report indicate that the poly(fluorene-co-phenylene)-based water/alcohol soluble cationic conjugated polymer avoids the intermixing between the electroluminance layer and adjacent ETL layer which is a common and serious problem in multilayer PLED fabrication by solution casting methods. This makes water solubility materials attractive for applications in PLEDs and other organic devices.
机译:新型可溶于醇的氨基烷基取代的阳离子共轭聚合物,聚[9,9'-双(6“-(C-(N,N,N-三甲基铵)-己基)芴-co-alt-的光学和电学性质[2,5-dimethoxy-1,4-phenylene dibromide](PFPB)已通过吸收,光致发光,电流电压致发光(JVL)和噪声表征技术进行了研究,吸收和光致发光研究表明PFPB是蓝色的PFPB在甲醇中的发光,其长烷基侧链和两个甲氧基侧链在结构中引入了空间位阻,从而最大程度地减少了链间相互作用,发现PFPB在甲醇中的光致发光量子效率为69.6%,制备了聚合物发光二极管(PLED)。以PFPB作为电子注入层,并对器件的物理性能进行了研究,得到的器件结果表明PFPB可以作为电子传输层(ETL)来提高PLED的性能,PLED器件的噪声特性表明通过引入PFPB层可以改善阴极和发射层之间的表面。该报告中的结果表明,基于聚(芴-共-亚苯基)的水/醇溶性阳离子共轭聚合物避免了电致发光层与相邻的ETL层之间的混合,这是通过溶液浇铸法制造多层PLED时常见的严重问题。 。这使得水溶性材料对于PLED和其他有机器件的应用具有吸引力。

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