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首页> 外文期刊>Organic Electronics >Highly efficient ternary polymer-based solution-processable exciplex with over 20% external quantum efficiency in organic light-emitting diode
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Highly efficient ternary polymer-based solution-processable exciplex with over 20% external quantum efficiency in organic light-emitting diode

机译:高效三元聚合物基溶液可加工的激基复合物,有机发光二极管的外部量子效率超过20%

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摘要

To develop high-performance solution-processed thermally activated delayed fluorescence (TADF) organic light-emitting diodes (OLED5) based on exciplex emitters, a novel strategy was present to develop ternary polymer-based exciplex emitter by introducing the third small-molecule constituent material into binary polymer-based exciplex in this work. Compared with common binary polymer-based exciplex emitters, such ternary polymer-based exciplex emitters could not only enhance up-conversion of nonradiative triplet excitons and realize higher exciton utilization, but also maintain the superiorities of polymers in solution processing, like excellent film-forming ability and thermal stability. Based on our strategy, a highly efficient ternary polymer-based exciplex PVK:PO-T2T:mCP was developed. As expected, PVK:PO-T2T:mCP successfully realizes much higher photoluminescence quantum yield of 82.0% and rate constant of RISC process of 2.62 x 10(5) than PVK:PO-T2T. In the solution-processed OLED5, interfacial PVK:PO-T2T:mCP exhibits a record-high maximum external quantum efficiency of 21.9% for polymer-based exciplexes, demonstrating the superiorly of our strategy for further development of solution-processed TADF-OLED5.
机译:为了开发基于激基复合物发射体的高性能溶液处理热激活延迟荧光(TADF)有机发光二极管(OLED5),提出了一种通过引入第三种小分子构成材料来开发基于三元聚合物的激基复合物发射体的新策略在这项工作中转化为基于二元聚合物的激基复合物。与普通的基于二元聚合物的激基发射体相比,此类三元聚合物的激基发射体不仅可以增强非辐射三重态激子的上转换并实现更高的激子利用率,还可以保持聚合物在溶液加工中的优势,例如出色的成膜性。能力和热稳定性。基于我们的策略,开发了一种高效的基于三元聚合物的激基复合物PVK:PO-T2T:m​​CP。不出所料,PVK:PO-T2T:m​​CP成功实现了比PVK:PO-T2T高82.0%的光致发光量子产率和RISC过程的速率常数2.62 x 10(5)。在溶液处理的OLED5中,界面PVK:PO-T2T:m​​CP对基于聚合物的激基复合物表现出创纪录的最大外部量子效率21.9%,这证明了我们进一步开发溶液处理的TADF-OLED5的策略的优越性。

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