Han Hongjing, Hu Sujuan, Zhang Shilong, Li Xiaojun, Sun Hailing, Chen Jiawen, Liu Baiquan, Liu Chuan, Chen Wangqiao, Zhang Qichun
Guangdong Provincial Key Laboratory of Optical Information Materials and Technology & Institute of Electronic Paper Displays, South China Academy of Advanced Optoelectronics, South China Normal University, Guangzhou, 510006, P. R. China.
School of Electronics and Information Technology, Sun Yat-sen University, Guangzhou, 510275, P. R. China.
Chemistry. 2022 Oct 7;28(56):e202201741. doi: 10.1002/chem.202201741. Epub 2022 Aug 8.
Single-emitting-layer white organic light-emitting diodes (SEL-WOLEDs) have developed rapidly in recent years due to the outstanding advantages of high efficiency, simple device structure, low cost, less phase separation, and stable emission color. Nevertheless, the relatively complicated host-dopant system is usually essential for most previous SEL-WOLEDs and the development of simple non-doped SEL-WOLEDs lags behind. Hence the straightforward synthesis of single-white-emitting molecules for non-doped SEL-WOLEDs still remains a great challengeable task. In this article, we designed and synthesized two new pyrene-based polyaromatic hydrocarbons (PAHs) and used them as emitting layer materials in the OLED devices. When the molecules change from the mono-fused one to bis-fused one, the emitting light changes from greenish to white color. Further study indicated that the bis-fused molecule PyD with more twisted and extended backbone packed in neat Cmca space group in single-crystal system compared with P2 /n for PyS, which may be favorable to form excimers in the solid state and broaden the emission spectrum in the OLEDs. As a result, a solution-processed non-doped single-white-emitting-molecule SEL-WOLED with high performance (e. g., a high color rendering index of 66) is reported. The findings will be beneficial not only to further development of simple WOLEDs, but also to other related organic optoelectronic technology.
近年来,单发射层白色有机发光二极管(SEL-WOLEDs)因其具有高效率、器件结构简单、成本低、相分离少以及发射颜色稳定等突出优点而得到迅速发展。然而,对于大多数之前的SEL-WOLEDs来说,相对复杂的主体-掺杂体系通常是必不可少的,而且简单的非掺杂SEL-WOLEDs的发展滞后。因此,直接合成用于非掺杂SEL-WOLEDs的单白色发光分子仍然是一项极具挑战性的任务。在本文中,我们设计并合成了两种基于芘的新型多环芳烃(PAHs),并将它们用作OLED器件中的发光层材料。当分子从单稠合型变为双稠合型时,发射光从绿色变为白色。进一步的研究表明,与PyS的P2 /n空间群相比,具有更扭曲和伸展主链的双稠合分子PyD在单晶体系中以纯净的Cmca空间群堆积,这可能有利于在固态中形成激基缔合物并拓宽OLEDs中的发射光谱。结果,报道了一种具有高性能(例如,高显色指数为66)的溶液处理非掺杂单白色发光分子SEL-WOLED。这些发现不仅将有利于简单WOLEDs的进一步发展,而且也有利于其他相关的有机光电子技术。