Samaeifar Fatemeh, Aziz Hany
Department of Electrical and Computer Engineering and Waterloo Institute for Nanotechnology, University of Waterloo, Waterloo, ON, Canada.
Front Chem. 2022 Apr 8;10:857551. doi: 10.3389/fchem.2022.857551. eCollection 2022.
Using solution-coating methods for the fabrication of organic light-emitting devices (OLEDs) offers a tremendous opportunity for enabling low-cost products and new applications. The electroluminescence (EL) stability of solution-coated (SOL) OLEDs, however, is significantly lower than that of vacuum-deposited (VAC) OLEDs, causing their operational lifetimes to be much shorter-an issue that continues to hamper their commercialization. The root causes of the lower EL stability of these devices remain unclear. This article briefly reviews and summarizes some of the work that has been done to-date for elucidating the root cause of the lower EL stability of SOL OLEDs, giving special attention to studies where side-by-side comparisons of SOL and VAC devices of the same materials have been conducted. Such comparisons allow for more-reliable conclusions about the specific effects of the solution-coating process on device stability to be made. The mini-review is intended to introduce the work done to-date on the causes of lower stability in SOL OLEDs and to stimulate further work for the purpose of closing the existing knowledge gap in this area and surmounting this long-standing challenge in the SOL OLED technology.
使用溶液涂层方法制造有机发光器件(OLED)为实现低成本产品和新应用提供了巨大机遇。然而,溶液涂层(SOL)OLED的电致发光(EL)稳定性明显低于真空沉积(VAC)OLED,导致其工作寿命短得多——这一问题继续阻碍它们的商业化。这些器件EL稳定性较低的根本原因仍不清楚。本文简要回顾并总结了迄今为止为阐明SOL OLED EL稳定性较低的根本原因所做的一些工作,特别关注对相同材料的SOL和VAC器件进行并排比较的研究。此类比较有助于就溶液涂层工艺对器件稳定性的具体影响得出更可靠的结论。这篇小型综述旨在介绍迄今为止关于SOL OLED稳定性较低原因所做的工作,并激发进一步的研究,以弥合该领域现有的知识差距,克服SOL OLED技术中这一长期存在的挑战。