Xie Zhixin, Liu Wei, Liu Yiwei, Song Xinyi, Zheng Heng, Su Xiang, Redshaw Carl, Feng Xing
Guangdong University of Technology, Guangzhou 510006, P. R. China.
Chemistry, School of Natural Sciences, University of Hull, Hull HU6 7RX, Yorkshire, U.K.
J Org Chem. 2024 Feb 2;89(3):1681-1691. doi: 10.1021/acs.joc.3c02372. Epub 2024 Jan 11.
Pyrene-based derivatives have been widely deployed in organic luminescent materials because of their bright fluorescence, high charge carrier mobility, and facile modification. Nevertheless, the fluorescence output of conventional pyrenes is prone to quenching upon aggregation due to extensive intermolecular π-π stacking interactions. To address this issue, a set of new -shaped pyrene-containing luminogens are synthesized from a new bromopyrene chemical precursor, 2-hydroxyl-7--butyl-1,3-bromopyrene, where the bromo and hydroxyl groups at the pyrene core can be readily modified to obtain the target products and provide great flexibility in tuning the photophysical performances. When the hydroxy group at the 2-position of pyrene was replaced by a benzyl group, the steric hindrance of the benzyl group not only efficiently inhibits the detrimental intermolecular π-π stacking interactions but also rigidifies the molecular conformation, resulting in a narrow-band blue emission. Moreover, the TPE-containing compounds and possessed characteristic aggregation-induced emission (AIE) properties with fluorescence quantum yields of up to 66% and 38% in the solid state, respectively. Thus, this article has methodically investigated the factors influencing the optical behavior, such as intermolecular interactions, and the steric effects of the substituent group, thereby opening up the potential to develop narrow-band pyrene-based blue emitters for OLED device applications.
芘基衍生物因其明亮的荧光、高电荷载流子迁移率和易于修饰而被广泛应用于有机发光材料中。然而,由于广泛的分子间π-π堆积相互作用,传统芘的荧光输出在聚集时容易猝灭。为了解决这个问题,从一种新的溴代芘化学前体2-羟基-7-丁基-1,3-溴代芘合成了一组新型含芘发光体,芘核上的溴和羟基可以很容易地被修饰以获得目标产物,并在调节光物理性能方面提供了很大的灵活性。当芘2位的羟基被苄基取代时,苄基的空间位阻不仅有效地抑制了有害的分子间π-π堆积相互作用,而且使分子构象刚性化,导致窄带蓝光发射。此外,含TPE的化合物 和 具有特征性的聚集诱导发光(AIE)特性,在固态下的荧光量子产率分别高达66%和38%。因此,本文系统地研究了影响光学行为的因素,如分子间相互作用和取代基的空间效应,从而为开发用于OLED器件应用的窄带芘基蓝光发射体开辟了潜力。