Department of Chemical and Materials Engineering, Photo-sensitive Material Advanced Research and Technology Center (Photo-SMART), National Kaohsiung University of Science and Technology, Kaohsiung 80778, Taiwan.
Department of Chemical and Materials Engineering, Photo-sensitive Material Advanced Research and Technology Center (Photo-SMART), National Kaohsiung University of Science and Technology, Kaohsiung 80778, Taiwan.
Spectrochim Acta A Mol Biomol Spectrosc. 2023 Nov 5;300:122908. doi: 10.1016/j.saa.2023.122908. Epub 2023 May 23.
Real-time and in-situ fluorescence visualization technologies have attention to in the forensic analysis of latent fingerprints (LFPs). The fingerprint powders with high performance and biocompatibility are essential for imaging LFPs with high definition and safety. In this work, five quaternary protoberberine alkaloid (QPA) derivatives were analyzed with reorganization energy and four-point calculations to explain the relationship between the substituent effect and luminescent properties and further resolve the luminous behaviors of four QPA-based natural products in solution. Thanks to the restriction of the intramolecular motions mechanism, aggregation-induced emission (AIE) active BBC nanoaggregates could sensitively detect explosive analog, 2,4,6-trinitrophenol, at a nanomolar level (9.8 nM of detection limit). Combined with natural montmorillonite (MMT) mineral powders, three levels of details for fingerprints were successfully imaged with solid-luminous BBC/MMT nanocomposites. The insight into the substituted effect of alkoxy groups on the QPA framework not only provides a new concept to design rotor-free AIE luminogens but also expands natural products and their nanocomposites into LFP and detection applications.
实时和原位荧光可视化技术在潜伏指纹(LFPs)的法医分析中引起了关注。具有高性能和生物相容性的指纹粉末对于实现 LFPs 的高清晰度和安全性成像至关重要。在这项工作中,通过重新组织能量和四点计算分析了五种季铵原小檗碱(QPA)衍生物,以解释取代基效应与发光性质之间的关系,并进一步解析四种基于 QPA 的天然产物在溶液中的发光行为。由于分子内运动机制的限制,具有聚集诱导发射(AIE)活性的 BBC 纳米聚集体可以在纳摩尔水平(检测限为 9.8 nM)灵敏地检测爆炸物类似物 2,4,6-三硝基苯酚。结合天然蒙脱石(MMT)矿物粉末,成功地用固态发光 BBC/MMT 纳米复合材料对三个级别的指纹细节进行成像。对 QPA 骨架中烷氧基取代基的取代效应的深入了解不仅为设计无转子 AIE 发光体提供了新概念,而且还将天然产物及其纳米复合材料扩展到 LFPs 和检测应用中。