Hong Yuning, Lam Jacky W Y, Tang Ben Zhong
Department of Chemistry, Nano Science and Technology Program, Hong Kong University of Science & Technology, Clear Water Bay, Kowloon, Hong Kong, China.
Chem Commun (Camb). 2009 Aug 7(29):4332-53. doi: 10.1039/b904665h. Epub 2009 May 13.
It is textbook knowledge that chromophore aggregation generally quenches light emission. In this feature article, we give an account on how we observed an opposite phenomenon termed aggregation-induced emission (AIE) and identified the restriction of intramolecular rotation as a main cause for the AIE effect. Based on the mechanistic understanding, we developed a series of new fluorescent and phosphorescent AIE systems with emission colours covering the entire visible spectral region and luminescence quantum yields up to unity. We explored high-tech applications of the AIE luminogens as, for example, fluorescence sensors (for explosive, ion, pH, temperature, viscosity, pressure, etc.), biological probes (for protein, DNA, RNA, sugar, phospholipid, etc.), immunoassay markers, PAGE visualization agents, polarized light emitters, monitors for layer-by-layer assembly, reporters for micelle formation, multistimuli-responsive nanomaterials, and active layers in the fabrication of organic light-emitting diodes.
发色团聚集通常会淬灭发光,这是教科书上的知识。在这篇专题文章中,我们讲述了我们如何观察到一种相反的现象——聚集诱导发光(AIE),并确定分子内旋转受限是AIE效应的主要原因。基于这种机理认识,我们开发了一系列新型荧光和磷光AIE体系,其发射颜色覆盖整个可见光谱区域,发光量子产率高达1。我们探索了AIE发光体的高科技应用,例如荧光传感器(用于检测爆炸物、离子、pH值、温度、粘度、压力等)、生物探针(用于检测蛋白质、DNA、RNA、糖、磷脂等)、免疫分析标记物、PAGE可视化剂、偏振光发射器、逐层组装监测器、胶束形成报告器、多刺激响应纳米材料以及有机发光二极管制造中的活性层。