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Suppressing the Undesirable Energy Loss in Solution-Processed Hyperfluorescent OLEDs Employing BODIPY-Based Hybridized Local and Charge-Transfer Emitter
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作者 Xuewei Nie Zafar Mahmood +7 位作者 Denghui Liu Mengke Li Dehua Hu Wencheng Chen longjiang xing Shijian Su Yanping Huo Shaomin Ji 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2024年第2期372-380,共9页
Hyperfluorescent organic light-emitting diodes(HF-OLEDs)approach has made it possible to achieve excellent device performance and color purity with low roll-off using noble-metal-free pure organic emitter.Despite sign... Hyperfluorescent organic light-emitting diodes(HF-OLEDs)approach has made it possible to achieve excellent device performance and color purity with low roll-off using noble-metal-free pure organic emitter.Despite significant progress,the performance of HF-OLEDs is still unsatisfactory due to the existence of a competitive dexter energy transfer(DET)pathway.In this contribution,two boron dipyrromethene(BODIPY)-based donor-acceptor emitters(BDP-C-Cz and BDP-N-Cz)with hybridized local and charge transfer characteristics(HLCT)are introduced in the HF-OLED to suppress the exciton loss by dexter mechanism,and a breakthrough performance with low-efficiency roll-off(0.3%)even at high brightness(1000 cd m^(-2))is achieved.It is demonstrated that the energy loss via the DET channel can be suppressed in HF-OLEDs utilizing the HLCT emitter,as the excitons from the dark triplet state of such emitters are funneled to its emissive singlet state following the hot-exciton mechanism.The developed HF-OLED device has realized a good maximum external quantum efficiency(EQE)of 19.25%at brightness of 1000 cd m^(-2)and maximum luminance over 60000 cd m^(-2),with an emission peak at 602 nm and Commission International de L'Eclairage(CIE)coordinates(0.57,0.41),which is among the best-achieved results in solution-processed HF-OLEDs.This work presents a viable methodology to suppress energy loss and achieve high performance in the HF-OLEDs. 展开更多
关键词 BODIPY hyperfluorescence organic light-emitting diodes solution-process
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TiO2纳米胶囊包覆的三重态湮灭上转换发光材料的研究
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作者 王至上 邢龙江 +2 位作者 贺琴 籍少敏 霍延平 《中国科学:化学》 CAS CSCD 北大核心 2020年第12期1836-1843,共8页
三重态-三重态湮灭(triplet-triplet-annihilation, TTA)上转换,是一种能够实现低能量光波向高能量光波转换的技术,该体系主要由三重态敏化剂和能量受体两部分组成,此类机制的上转换主要在溶液中发生,很难作为一个分子整体使用,这将大... 三重态-三重态湮灭(triplet-triplet-annihilation, TTA)上转换,是一种能够实现低能量光波向高能量光波转换的技术,该体系主要由三重态敏化剂和能量受体两部分组成,此类机制的上转换主要在溶液中发生,很难作为一个分子整体使用,这将大大限制其应用领域.本文通过使用胶束软模板法将敏化剂和能量受体包覆到二氧化钛(TiO2)壳内,成功制备了基于TTA上转换的高效上转换纳米胶囊(TTA-UCNP).本研究选用双碘代氟硼二吡咯(BODIPY)作为三重态敏化剂,苝作为能量受体,大豆油作为溶剂.这些新合成的纳米胶囊不仅可以保持上转换体系处于溶液环境,并且可以有效阻隔氧气对三重态的猝灭,在水相中成功实现了高效的上转换发光.在该上转换纳米胶囊的制备过程中,我们研究了表面活性剂的种类、乙酸用量和钛酸丁酯用量对纳米胶囊上转换发光强度的影响,并通过透射电子显微镜(TEM)、扫描电子显微镜(SEM)和X射线光电子能谱(XPS)等对纳米胶囊结构进行表征和分析,成功制备了高效的TiO2纳米胶囊包覆的TTA上转换发光材料. 展开更多
关键词 三重态-三重态湮灭 上转换 TiO2纳米胶囊 胶束软模板法
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