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Highly efficient fluorene- and benzothiadiazole-based conjugated copolymers for polymer light-emitting diodes

机译:用于聚合物发光二极管的高效芴和苯并噻二唑基共轭共聚物

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A series of highly efficient conjugated polymers have been synthesized for application in polymer light-emitting diodes (PLEDs). These polymers were based on the copolymerization between 9,9-dihexylfluorene and benzothiadiazole (BT). In several cases, a third comonomer was added to adjust the charge injecting and transporting properties of the polymers. All of these copolymers exhibited strong green emission at around 540 nm which can be attributed to either the charge transfer between an electron-rich segment and an electron-deficient BT-containing segment of the polymers or the Forster energy transfer between different polymer chains. These copolymers also exhibited very high photoluminescence quantum efficiencies up to 55%. A double-layer device using one of the copolymers as the emissive layer exhibited a low turn-on voltage (3.4 V), a very high external quantum efficiency (6.0%), and a high brightness of 59 400 cd/cm(2). [References: 20]
机译:合成了一系列高效共轭聚合物,用于聚合物发光二极管(PLED)。这些聚合物基于9,9-二己基芴与苯并噻二唑(BT)之间的共聚。在一些情况下,添加第三共聚单体以调节聚合物的电荷注入和传输性质。所有这些共聚物在540 nm处均显示出强绿色发射,这可以归因于聚合物的富电子链段和缺电子的含BT链段之间的电荷转移,或不同聚合物链之间的Forster能量转移。这些共聚物还表现出非常高的光致发光量子效率,最高可达55%。使用其中一种共聚物作为发光层的双层器件具有较低的开启电压(3.4 V),非常高的外部量子效率(6.0%)和59400 cd / cm(2)的高亮度。 [参考:20]

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