首页> 外文期刊>Journal of Advanced Research >Exciplex energy transfer through spacer: White electroluminescence with enhanced stability based on cyan intermolecular and orange intramolecular thermally activated delayed fluorescence
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Exciplex energy transfer through spacer: White electroluminescence with enhanced stability based on cyan intermolecular and orange intramolecular thermally activated delayed fluorescence

机译:通过间隔物的Exciplex能量转移:具有基于青色分子间和橙色分子内热激活延迟荧光的增强稳定性的白色电致发光

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Capability of exciplex energy transfer through a spacer was investigated using three exciplex-forming solid mixtures which contained the well-known electron accepting 2,4,6-tris[3-(diphenylphosphinyl)phenyl]-1,3,5-triazine and appropriately designed bipolar cyanocarbazolyl-based derivatives functionalized by attachment of carbazolyl, acridanyl or phenyl units. These novel cyanocarbazolyl-based derivatives were used as both the spacer and exciplex-forming donor. Efficient organic light-emitting diodes with electroluminescence in cyan-yellow region and maximum external quantum efficiency of up to 7.7% were fabricated owing to efficient thermally activated fluorescence (TADF) of the newly discovered exciplexes. An approach of exciton separation by the spacer between the studied exciplexes and selected orange TADF emitter was proposed for the fabrication of white electroluminescent devices with prolonged lifetime comparing to that of single-color exciplex-based devices. Exciplex-forming systems were tested for exciton separation between inter- and intramolecular TADF. Exciplex energy transfer through a spacer was observed on relatively long distance for one system due to the energy resonance between triplet levels of the exciplex and spacer. First time observed here exciplex energy transfer through a spacer can be useful for both improvement of device stability and obtaining of white electroluminescence.
机译:使用三种反应性形成固体混合物研究了通过间隔物通过间隔物的能力的能力,其含有众所周知的电子接受2,4,6- Tris [3-(二苯基膦基)苯基] -1,3,5-三嗪和适当的设计了通过附着咔唑基,吖啶基或苯基单元官能化的基于双极氰基氨基唑基的衍生物。这些基于青氨基氨基唑基的衍生物用作间隔件和切基复合体的供体。由于新发现的Exciplecs的有效热活化的荧光(TADF),制造了在青色 - 黄色区域中具有电致发光和最大外部量子效率的有效的有机发光二极管,其具有新发现的基因的有效热活化的荧光(TADF)。所研究的基因复合和选择的橙色TADF发射器之间的间隔物的激子分离方法是为了制造具有延长寿命的白色电致发光器件,与基于单色的基于分子的装置相比。测试基于和分子内TADF之间的激子分离的反应性形成系统。由于Exciplex和垫片的三重态水平之间的能量共振,在一个系统上观察到通过间隔物的Exciplex能量传递。这里首先观察到通过间隔物的Exciplex能量传递可用于改善装置稳定性和获得白色电致发光的改善。

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