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含咔唑-二苯并噻吩基侧链的聚合物主体在高性能溶液法制备的热激活延迟荧光有机发光二极管中的应用

Polymer Hosts Containing Carbazole-Dibenzothiophene-Based Pendants for Application in High-Performance Solution-Processed TADF-OLEDs.

作者信息

Park Chae Yeong, Park Su Hong, Kwon Na Yeon, Park Jin Young, Kang Min Ji, Kwak Haeun, Son Jae Hoon, Woo Han Young, Hong Chang Seop, Cho Min Ju, Choi Dong Hoon

机构信息

Department of Chemistry, Research Institute for Natural Sciences, Korea University, 145 Anam-ro, Seongbuk-gu, Seoul 02841, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2024 Aug 28;16(34):45242-45251. doi: 10.1021/acsami.4c06324. Epub 2024 Aug 19.

Abstract

The film-forming capability of the host plays a crucial role in effectively forming a light-emitting layer through a solution process in organic light-emitting diodes (OLEDs). In this study, we synthesized two side-chain polymer hosts, and , consisting of carbazole and dibenzothiophene. The synthesis was carried out through radical polymerization using styrene-based host monomers. Their photophysical characteristics and molecular energy levels are similar to those of the reference small molecule hosts, namely, Cz-DBT and 2Cz-DBT. However, compared to the small-molecule hosts Cz-DBT and 2Cz-DBT, the two polymer hosts showed high thermal stability and good film-forming properties in the neat and host-emitter blend films. Specifically, bluish-green multiple-resonance (MR) thermally activated delayed fluorescence (TADF) OLEDs, fabricated via solution processing with an emissive layer based on , exhibited remarkable performance. These devices achieved a maximum external quantum efficiency of 17.4% without utilizing a hole transport layer. This polymer host design strategy is considered to significantly contribute to enhancing the performance of TADF-OLEDs fabricated through solution processing.

摘要

主体材料的成膜能力对于在有机发光二极管(OLED)中通过溶液法有效形成发光层起着至关重要的作用。在本研究中,我们合成了两种由咔唑和二苯并噻吩组成的侧链聚合物主体材料, 和 。合成过程通过使用基于苯乙烯的主体单体进行自由基聚合反应来实现。它们的光物理特性和分子能级与参考小分子主体材料Cz-DBT和2Cz-DBT相似。然而,与小分子主体材料Cz-DBT和2Cz-DBT相比,这两种聚合物主体材料在纯膜以及主体-发光体混合膜中表现出高热稳定性和良好的成膜性能。具体而言,通过溶液法制备的基于 的发光层的蓝绿色多共振(MR)热激活延迟荧光(TADF)OLED表现出卓越的性能。这些器件在未使用空穴传输层的情况下实现了17.4%的最大外量子效率。这种聚合物主体材料设计策略被认为对提高通过溶液法制备的TADF-OLED的性能有显著贡献。

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