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通过分子间电子转移效应构建石墨烯量子点比率荧光探针,用于日常饮料中氧氟沙星及其 L-异构体的智能和实时可视化检测。

Construction of graphene quantum dots ratiometric fluorescent probe by intermolecular electron transfer effect for intelligent and real-time visual detection of ofloxacin and its L-isomer in daily drink.

机构信息

Department of Microelectronic Science and Engineering, School of Physical Science and Technology, Ningbo University, Ningbo 315211, PR China.

College of Telecommunications and Information Engineering, Nanjing University of Posts and Telecommunications, Nanjing 210003, PR China.

出版信息

Food Chem. 2023 Jun 15;411:135514. doi: 10.1016/j.foodchem.2023.135514. Epub 2023 Jan 19.

Abstract

The design of intelligent and real-time sensing devices is significant in the medical drug monitoring field, but it is still highly challenging. Here, ratiometric fluorescent detections of ofloxacin (OFL) and its L-isomer levofloxacin (LEV) constructed from tri-doped graphene quantum dots (T-GQDs) are reported, and the detection limits reach as low as 46/67 nM toward OFL/LEV due to the intermolecular electron transfer (intermolecular ET) effect. After adding OFL/LEV, the generation of electrostatic bond provides a channel for the intermolecular ET from the edge of T-GQDs to OFL/LEV, resulting in the fluorescence quenching at 414 nm and the fluorescence promoting at 498 nm. Furthermore, a smartphone can be used for the visual and quantitative detection of OFL and LEV by identifying the RGB values of test paper and drink samples. This work not only reveals the physics mechanism of ratiometric detection, but also develops a convenient smartphone diagnostic for OFL and LEV.

摘要

智能实时传感设备的设计在药物监测领域具有重要意义,但仍然极具挑战性。在这里,报告了基于三掺杂石墨烯量子点(T-GQDs)构建的氧氟沙星(OFL)及其 L-异构体左氧氟沙星(LEV)的比率荧光检测,由于分子间电子转移(intermolecular ET)效应,对 OFL/LEV 的检测限低至 46/67 nM。加入 OFL/LEV 后,静电键的产生为分子间 ET 提供了从 T-GQDs 边缘到 OFL/LEV 的通道,导致在 414nm 处荧光猝灭和在 498nm 处荧光增强。此外,智能手机可通过识别试纸和饮料样本的 RGB 值用于 OFL 和 LEV 的可视化和定量检测。这项工作不仅揭示了比率检测的物理机制,还开发了一种用于 OFL 和 LEV 的便捷智能手机诊断方法。

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