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将寿命确定为导致基于镧系元素的有机发光二极管亮度较低的关键参数之一。

Identifying lifetime as one of the key parameters responsible for the low brightness of lanthanide-based OLEDs.

作者信息

Utochnikova Valentina V, Aslandukov Andrey N, Vashchenko Andrey A, Goloveshkin Alexander S, Alexandrov Alexey A, Grzibovskis Raitis, Bünzli Jean-Claude G

机构信息

Material Science Department and Chemistry Department of Lomonosov Moscow State University, Russia, GSP-1, 1-3 Leninskiye Gory, 119991, Moscow, Russian Federation.

Material Science Department of Lomonosov Moscow State University, Russia, GSP-1, 1-3 Leninskiye Gory, 119991, Moscow, Russian Federation.

出版信息

Dalton Trans. 2021 Sep 28;50(37):12806-12813. doi: 10.1039/d1dt02269e.

Abstract

OLEDs based on lanthanide complexes have decisive optical advantages but are hampered by low brightness. Despite the efforts to optimize several parameters such as quantum yield and charge carrier mobility, there seems to be another key parameter that hinders their performances. Experimental data are therefore collected for mixed-ligand europium complexes with bathophenanthroline and different classes of anionic ligands and screened to identify the key parameter responsible for this situation, which turns out to be the long lifetime of their excited states. A broad literature search supports this conclusion, showing that lanthanide complexes are inferior to other classes of OLED emitters often because of their long lifetimes; furthermore, among a series of lanthanide complexes, the best results are achieved for those with the shortest lifetimes, even though they suffer from low quantum yields.

摘要

基于镧系元素配合物的有机发光二极管具有决定性的光学优势,但亮度较低限制了其发展。尽管人们努力优化诸如量子产率和电荷载流子迁移率等多个参数,但似乎还有另一个关键参数阻碍了它们的性能。因此,收集了含有二氮杂菲和不同类阴离子配体的混合配体铕配合物的实验数据,并进行筛选以确定造成这种情况的关键参数,结果发现是其激发态的长寿命。广泛的文献检索支持了这一结论,表明镧系元素配合物通常因其长寿命而不如其他类别的有机发光二极管发光体;此外,在一系列镧系元素配合物中,寿命最短的那些配合物取得了最佳结果,尽管它们的量子产率较低。

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