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首页> 外文期刊>SID International Symposium: Digest of Technology Papers >Synthesis of Reverse Intersystem Crossing Facilitating Host Material for High Efficiency in Red Thermally Activated Delayed Fluorescent Organic Light-emitting Diodes
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Synthesis of Reverse Intersystem Crossing Facilitating Host Material for High Efficiency in Red Thermally Activated Delayed Fluorescent Organic Light-emitting Diodes

机译:逆线系统交叉的合成促进主体材料在红色热激活延迟荧光有机发光二极管中的高效率

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摘要

In this study, we introduced a reverse intersystem crossing activating host material to obtain high efficiency in red thermally activated delayed fluorescent organic light-emitting diodes. The host material was composed of phenylcarbazole and pyridofuropyridine moieties. The 3-(9-phenyl-9H-carbazol-3-yl)furo[2,3-b:5,4-b']dipyridine (3PCz-PFP) host material was synthesized by introducing pyridofuropyridine at 3- position of the 9-phenylcarbazole. We were able to obtain a high external quantum efficiency of 24.0% by doping red-emitting thermally activated delayed emitter in 3PCz-PFP host material. This efficiency is one of the highest efficiencies in red thermally activated delayed fluorescent devices. The high quantum efficiency of the red thermally activated delayed fluorescent devices was achieved due to improved reverse intersystem crossing rate and ambipolar charge transport character of the host material.
机译:在这项研究中,我们介绍了一种反向间接的激活主机材料,以获得红色热激活延迟荧光有机发光二极管的高效率。 主体材料由苯基咔唑和吡啶呋喃吡啶部分组成。 通过在3-位置引入吡啶呋喃替啶来合成3-(9-苯基-9H-咔唑-3-基)呋喃[2,3-B:5,4-B']二滤吡啶(3PCZ-PFP)宿主材料 9-苯基咔唑。 我们通过在3pCz-PFP主体材料中掺杂红发热热活化的延迟发射器,我们能够获得24.0%的高外部量子效率。 这种效率是红色热激活延迟荧光装置中最高效率之一。 由于提高了主体材料的反向流动系统交叉速率和Ambolar电荷传输特性,实现了红色热活化延迟荧光装置的高量子效率。

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