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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >A solution-processable host material of 1,3-bis{3-[3-(9-carbazolyl)phenyl]-9-carbazolyl}benzene and its application in organic light-emitting diodes employing thermally activated delayed fluorescence
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A solution-processable host material of 1,3-bis{3-[3-(9-carbazolyl)phenyl]-9-carbazolyl}benzene and its application in organic light-emitting diodes employing thermally activated delayed fluorescence

机译:1,3-双{3- [3-(3-(9-咔唑基)苯基] -9-咔唑基}苯的溶液可加工基质材料及其在利用热活化延迟荧光的有机发光二极管中的应用

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摘要

Solution-processed organic light-emitting diodes (OLEDs) that employed an efficient green thermally activated delayed fluorescent dopant of (4s, 6s)-2,4,5,6-tetra(9H-carbazol-9-yl)isophthalonitrile (4CzIPN) and small molecular hosts were thoroughly investigated. We demonstrated that increasing the electron injection and transport capabilities of the electron transport layers as well as the glass transition temperature (T-g) of the host material can significantly improve the half-life of the OLEDs. Using a novel host material of 1,3-bis{3-[3-(9-carbazolyl)phenyl]-9-carbazolyl}benzene (CPCB) with a high triplet energy level of 2.79 eV and a high T-g of 165 degrees C, a solution-processed 4CzIPN-based OLED achieved an external electroluminescence quantum efficiency of 10% and a half-life of nearly 200 hours with an initial luminescence of 1000 cd m(-2). This was comparable to a device that used a dry-processed emissive layer.
机译:固溶处理有机发光二极管(OLED),其使用(4s,6s)-2,4,5,6-四(9H-咔唑-9-基)间苯二甲腈(4CzIPN)的高效绿色热激活延迟荧光掺杂剂对小分子宿主进行了彻底研究。我们证明了增加电子传输层的电子注入和传输能力以及主体材料的玻璃化转变温度(T-g)可以显着提高OLED的半衰期。使用一种新型的1,3-双{3- [3-(3-(9-咔唑基)苯基] -9-咔唑基}苯(CPCB)主体材料,该化合物的三重态能级为2.79 eV,Tg为165摄氏度,经过溶液处理的基于4CzIPN的OLED达到了10%的外部电致发光量子效率和近200小时的半衰期,初始发光为1000 cd m(-2)。这与使用干处理的发射层的设备相当。

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