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少即是多:稀释增强了热激活延迟荧光激基复合物的光学和电学性能。

Less Is More: Dilution Enhances Optical and Electrical Performance of a TADF Exciplex.

作者信息

Colella Marco, Danos Andrew, Monkman Andrew P

机构信息

Department of Physics , Durham University , South Road , Durham DH1 3LE , United Kingdom.

出版信息

J Phys Chem Lett. 2019 Feb 21;10(4):793-798. doi: 10.1021/acs.jpclett.8b03646. Epub 2019 Feb 8.

Abstract

A surprising yet highly practical approach to improve the performance of a TADF exciplex blend is reported. Using the TSBPA donor and PO-T2T acceptor to form an exciplex, we are able to blue shift the emission, increase PLQY from 58 to 80%, and increase the device EQE from 14.8 to 19.2% by simply diluting the exciplex with an inert high triplet energy host material-here either UGH-3 or DPEPO. These effects are explained in terms of an increasing donor-acceptor distance and associated charge separation, while different behaviors observed in the different hosts are attributed to different energy barriers to electron transfer through the host. We expect that the observed performance-enhancing effects of dilution will be general to different exciplex blends and host materials and offer a new way to optimize the electrical properties of exciplex emission layers with narrow blue emission.

摘要

报道了一种提高热活化延迟荧光(TADF)激基复合物混合物性能的令人惊讶但非常实用的方法。使用TSBPA供体和PO-T2T受体形成激基复合物,通过简单地用惰性高三重态能量主体材料(这里是UGH-3或DPEPO)稀释激基复合物,我们能够使发射蓝移,将光致发光量子产率(PLQY)从58%提高到80%,并将器件外量子效率(EQE)从14.8%提高到19.2%。这些效应可以通过供体-受体距离的增加和相关的电荷分离来解释,而在不同主体中观察到的不同行为则归因于通过主体进行电子转移的不同能量势垒。我们预计,观察到的稀释对性能的增强作用对于不同的激基复合物混合物和主体材料是普遍适用的,并为优化具有窄蓝光发射的激基复合物发射层的电学性质提供了一种新方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8dbc/7005938/e7280f2ba2ba/jz8b03646_0001.jpg

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