Hwang Jinhyo, Lee Chiho, Jeong Ji-Eun, Kim Chae Yeong, Woo Han Young, Park Sungnam, Cho Min Ju, Choi Dong Hoon
Department of Chemistry, Research Institute for Natural Sciences , Korea University , 145 Anam-ro , Sungbuk-gu, Seoul 02841 , Korea.
ACS Appl Mater Interfaces. 2020 Feb 19;12(7):8485-8494. doi: 10.1021/acsami.9b20279. Epub 2020 Feb 6.
Recently, various host materials have been developed for solution-processed thermally activated delayed fluorescent organic light-emitting diodes (TADF-OLEDs). Compared with small-molecule hosts, polymeric hosts are advantageous for inducing a uniform distribution and segregation of dopant molecules in the emissive layer without undesired large-scale phase separation. In this study, new polymer hosts were demonstrated, in which a bipolar conjugative moiety consisting of a carbazole (Cz) donor and an α-carboline (α-Cb) acceptor was bound to the polystyrene backbone through a non-conjugated linker. They exhibited high triplet energies of >2.8 eV, and their emission spectra overlapped with the absorption spectrum of a green TADF emitter, which allowed facile energy transfer from the polymeric host to the small-molecule dopants. High device performance was observed, with external quantum efficiencies (EQEs) of 13.65, 17.09, and 17.48% for solution-processed green TADF-OLEDs using , , and , respectively, as hosts for the EML. The EQEs of bipolar host ( and )-based devices were higher than those of unipolar host (poly(-vinylcarbazole) and )-based devices owing to the well-balanced charge-carrier transport. According to these results, the polymeric host bearing a bipolar Cz and α-Cb coupled moiety is a promising material for solution-processable TADF-OLEDs.
最近,人们开发了各种用于溶液处理的热激活延迟荧光有机发光二极管(TADF-OLED)的主体材料。与小分子主体相比,聚合物主体有利于在发射层中诱导掺杂剂分子均匀分布和分离,而不会出现不希望的大规模相分离。在本研究中,展示了新型聚合物主体,其中由咔唑(Cz)供体和α-咔啉(α-Cb)受体组成的双极共轭部分通过非共轭连接基与聚苯乙烯主链相连。它们表现出大于2.8 eV的高三重态能量,并且其发射光谱与绿色TADF发射体的吸收光谱重叠,这使得能量能够从聚合物主体轻松转移到小分子掺杂剂。观察到了高器件性能,分别以 、 和 作为发射层主体的溶液处理绿色TADF-OLED的外量子效率(EQE)分别为13.65%、17.09%和17.48%。由于电荷载流子传输平衡良好,基于双极主体( 和 )的器件的EQE高于基于单极主体(聚(乙烯基咔唑)和 )的器件。根据这些结果,带有双极Cz和α-Cb偶联部分的聚合物主体是用于溶液可加工TADF-OLED的有前途的材料。