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The Influence of Energy Transfer on the Color Temperature Change in Color-Tunable Organic Light Emitting Diodes with Interface Exciplex
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作者 Yanbo Wang Zhiqi Kou +3 位作者 Xinyu Zhu Wenzhuo Xia Chenglin Leng Zhixiu Ma 《Optics and Photonics Journal》 CAS 2023年第2期25-34,共10页
The color-tunable white organic light-emitting diode (CT-WOLED) with wide correlation color temperature (CCT) has many advantages in optimizing the artificial light source to adapt to the human physiological cycle. Th... The color-tunable white organic light-emitting diode (CT-WOLED) with wide correlation color temperature (CCT) has many advantages in optimizing the artificial light source to adapt to the human physiological cycle. The research on the change trend of CCT and the law of extending the change range of CCT will help to further improve the performance of this kind of device. The present work fabricated a series of CT-WOLED devices with a simple structure, which are all composed of two ultra-thin phosphor layers (PO-01 and Flrpic) and a spacer interlayer. The yellow interface exciplex (TCTA/PO-T2T) formed between the spacer layer (PO-T2T) and transmission material (TCTA) in EML will decrease the CCT value at low voltage. The relationship between the energy transfer in EML and CCT change trend is investigated by adjusting the interface exciplexes and the thickness of the interlayer or the phosphor layer in devices A, B and C, respectively. The results demonstrate that a simple OLED device with an interlayer inserted between two ultra-thin phosphor layers can achieve a wider CCT span from 3359 K to 6451 K at voltage increases from 2.75 V to 8.25 V. . 展开更多
关键词 interface exciplex Energy Transfer Color-Tunable WOLED
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利用热激子反向系间窜越的特征磁响应探测界面型OLED中的Dexter能量传递过程
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作者 魏福贤 刘俊宏 +4 位作者 彭腾 汪波 朱洪强 陈晓莉 熊祖洪 《物理学报》 SCIE EI CAS CSCD 北大核心 2023年第18期346-354,共9页
基于界面激基复合物作为主体的主-客体型有机发光二极管(organic light emitting diodes,OLEDs)的外量子效率已经突破36%,但其主-客体间能量传递过程还有待深入研究.本文提出一种基于客体Rubrene热激子反向系间窜越(T_(2,Rub)→S_(1,Ru... 基于界面激基复合物作为主体的主-客体型有机发光二极管(organic light emitting diodes,OLEDs)的外量子效率已经突破36%,但其主-客体间能量传递过程还有待深入研究.本文提出一种基于客体Rubrene热激子反向系间窜越(T_(2,Rub)→S_(1,Rub))的特征磁响应探测界面激基复合物型OLEDs中能量传递过程的实验策略.具体通过表征主、客体材料的光物理特性,证明了主-客体单重态激子间的F?rster共振能量传递过程;通过研究界面激基复合物型器件的磁电致发光响应曲线,可视化了主-客体三重态激子间的Dexter能量传递过程,且该过程有效发生对于器件电致发光具有不可忽视的促进作用.本研究不仅为探测OLEDs中Dexter能量传递过程提供切实可行的理论方法,还为进一步设计高性能热激子型OLEDs提供新的实验参考. 展开更多
关键词 界面激基复合物 热激子 Dexter能量传递 磁电致发光
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