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功能化碗烯的室温多重磷光:温度传感与余辉有机发光二极管

Room-Temperature Multiple Phosphorescence from Functionalized Corannulenes: Temperature Sensing and Afterglow Organic Light-Emitting Diode.

作者信息

Si Changfeng, Wang Tao, Gupta Abhishek Kumar, Cordes David B, Slawin Alexandra M Z, Siegel Jay S, Zysman-Colman Eli

机构信息

Organic Semiconductor Centre, EaStCHEM School of Chemistry, University of St Andrews, St. Andrews, KY16 9ST, UK.

School of Pharmaceutical Science and Technology, Tianjin University, Tianjin, 300072, P. R. China.

出版信息

Angew Chem Int Ed Engl. 2023 Oct 23;62(43):e202309718. doi: 10.1002/anie.202309718. Epub 2023 Sep 15.

Abstract

Corannulene-derived materials have been extensively explored in energy storage and solar cells, however, are rarely documented as emitters in light-emitting sensors and organic light-emitting diodes (OLEDs), due to low exciton utilization. Here, we report a family of multi-donor and acceptor (multi-D-A) motifs, TCzPhCor, TDMACPhCor, and TPXZPhCor, using corannulene as the acceptor and carbazole (Cz), 9,10-dihydro-9,10-dimethylacridine (DMAC), and phenoxazine (PXZ) as the donor, respectively. By decorating corannulene with different donors, multiple phosphorescence is realized. Theoretical and photophysical investigations reveal that TCzPhCor shows room-temperature phosphorescence (RTP) from the lowest-lying T ; however, for TDMACPhCor, dual RTP originating from a higher-lying T (T ) and a lower-lying T (T ) can be observed, while for TPXZPhCor, T -dominated RTP occurs resulting from a stabilized high-energy T geometry. Benefiting from the high-temperature sensitivity of TPXZPhCor, high color-resolution temperature sensing is achieved. Besides, due to degenerate S and T states of TPXZPhCor, the first corannulene-based solution-processed afterglow OLEDs is investigated. The afterglow OLED with TPXZPhCor shows a maximum external quantum efficiency (EQE ) and a luminance (L ) of 3.3 % and 5167 cd m , respectively, which is one of the most efficient afterglow RTP OLEDs reported to date.

摘要

碗烯衍生材料在能量存储和太阳能电池领域已得到广泛研究,然而,由于激子利用率低,在发光传感器和有机发光二极管(OLED)中作为发光体的相关报道却很少。在此,我们报道了一系列多供体和受体(多D - A)结构,即TCzPhCor、TDMACPhCor和TPXZPhCor,分别以碗烯作为受体,咔唑(Cz)、9,10 - 二氢 - 9,10 - 二甲基吖啶(DMAC)和吩恶嗪(PXZ)作为供体。通过用不同的供体修饰碗烯,实现了多重磷光。理论和光物理研究表明,TCzPhCor在最低的三重态(T)表现出室温磷光(RTP);然而,对于TDMACPhCor,可以观察到源于较高能级的三重态(T )和较低能级的三重态(T )的双重RTP,而对于TPXZPhCor,由于高能级三重态(T )几何结构的稳定,出现了以T 为主的RTP。受益于TPXZPhCor的高温敏感性,实现了高颜色分辨率的温度传感。此外,由于TPXZPhCor的单重态(S)和三重态(T )简并,研究了首个基于碗烯的溶液处理余辉OLED。含有TPXZPhCor的余辉OLED的最大外量子效率(EQE )和亮度(L )分别为3.3 %和5167 cd m ,这是迄今为止报道的效率最高的余辉RTP OLED之一。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0864/10953377/59071e51889a/ANIE-62-0-g010.jpg

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