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首页> 外文期刊>ACS applied materials & interfaces >Stimuli-Responsive Aggregation-Induced Delayed Fluorescence Emitters Featuring the Asymmetric D-A Structure with a Novel Diarylketone Acceptor Toward Efficient OLEDs with Negligible Efficiency Roll-Off
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Stimuli-Responsive Aggregation-Induced Delayed Fluorescence Emitters Featuring the Asymmetric D-A Structure with a Novel Diarylketone Acceptor Toward Efficient OLEDs with Negligible Efficiency Roll-Off

机译:刺激响应性聚集诱导的延迟荧光发射器,其具有新的二芳基酮受体的不对称D-A结构,朝向有效的OLED具有可忽略的效率滚动

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摘要

Multifunctional luminescent materials with aggregation-induced delayed fluorescence (AIDF) are capable of suppressing concentration-caused emission quenching and exciton annihilation when used as organic light-emitting diode (OLED) emitters. In this contribution, three stimuli-responsive AIDF luminogens, pipd-BZ-PXZ, pipd-BZ-PTZ, and pipd-BZ-DMAC, featuring a D-A asymmetric framework based on a fused N-heterocycle diarylketone acceptor (imid-azo[1,2-a]pyridin-2-yl(phenyl)methanone pipd) are designed and synthesized. Interestingly, pipd-BZ-PTZ forms two different kinds of crystals (G-crystal and O-crystal) with distinct intermolecular interactions between pipd moieties. The G-crystal with a looser packing mode presents significant morphology-dependent stimuli-responsive behavior with a shifted emission wavelength of 56 nm. Generated by a strong intramolecular charge transfer effect, pipd-BZ-PXZ and pipd-BZ-PTZ exhibit orange to red emission in solution and neat films. Both nondoped and doped devices are fabricated for comparison. Nondoped devices present moderate performance with external quantum efficiencies and current efficiency that reach 7.04% and 19.86 cd A(-1), respectively, and the corresponding efficiency roll off at 1000 cd m(-2) is as small as 2.3%, which is among the best records of AIDF-OLEDs with an emission wavelength over 570 nm. Doped devices show better performance with corresponding efficiencies of up to 55.41 cd A-1 and 15.77%.
机译:当用作有机发光二极管(OLED)发射器时,具有聚集诱导的延迟荧光(AIDF)的多官能发光材料能够抑制浓度导致的排放猝灭和激子湮灭。在该贡献中,三种刺激反应辅助剂激素,PIPD-BZ-PXZ,PIPD-BZ-PTZ和PIPD-BZ-DMAc,具有基于熔融的N-杂环二芳基酮受体的DA非对称框架(IMID-AZO [1设计和合成了2-A]吡啶-2-基(苯基)甲基酮PIPD)。有趣的是,PIPD-BZ-PTZ形成两种不同种类的晶体(G晶体和O晶体),具有PIPD部分之间的不同的分子间相互作用。具有宽松填充模式的G晶体具有偏移发射波长为56nm的显着形态依赖性刺激行为。由强大的分子内电荷转移效果产生,PIPD-BZ-PXZ和PIPD-BZ-PTZ在溶液和整洁膜中表现出橙色至红发射。针对比较制造了掺杂和掺杂器件。 NONDOPED设备具有适度的性能,具有外部量子效率和电流效率,分别达到7.04%和19.86cd A(-1),并且在1000cd m(-2)时关闭相应的效率滚动等于2.3%,即在570nm超过570nm的发射波长的最佳记录中。掺杂器件表现出更好的性能,相应的效率高达55.41℃和15.77%。

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