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基于智能手机的双反信号 MOFs 荧光传感用于智能现场可视化检测孔雀石绿

Smartphone-based dual inverse signal MOFs fluorescence sensing for intelligent on-site visual detection of malachite green.

机构信息

Analytical & Testing Center, Sichuan University, Chengdu, Sichuan, 610064, China.

Analytical & Testing Center, Sichuan University, Chengdu, Sichuan, 610064, China.

出版信息

Talanta. 2024 Jul 1;274:126039. doi: 10.1016/j.talanta.2024.126039. Epub 2024 Apr 4.

Abstract

The development of intelligent, sensitive, and visual methods for the rapid detection of veterinary drug residues is essential to ensure food quality and safety. Here, a smartphone-based dual inverse signal MOFs fluorescence sensing system was proposed for intelligent in-site visual detection of malachite green (MG). A UiO-66-NH@RhB-dual-emission fluorescent probe was successfully synthesized in one step using a simple one-pot method. The inner filter effect (IFE) quenches the red fluorescence, while hydrogen bonding interaction enhances the blue fluorescence, enabling highly sensitive, accurate, and visual detection of MG dual inverse signals through fluorescence analysis. The probe showed great linearity over a wide range of 0.1-100 μmol/L, with a limit of detection (LOD) of 20 nmol/L. By integrating smartphone photography and RGB (red, green, and blue) analysis, accurate quantitative analysis of MG in water and actual fish samples can be achieved within 5 min. This developed platform holds great promise for the on-site detection of MG in practical applications, with the advantages of simplicity, cost-effectiveness, and rapidity. Consequently, it may open up a new pathway for on-site evaluation of food safety and environmental health.

摘要

开发智能、灵敏、可视化的方法来快速检测兽药残留对于保障食品安全至关重要。在这里,我们提出了一种基于智能手机的双逆信号 MOFs 荧光传感系统,用于智能现场可视化检测孔雀石绿 (MG)。采用简单的一锅法一步成功合成了 UiO-66-NH@RhB-双发射荧光探针。内滤效应 (IFE) 猝灭了红色荧光,而氢键相互作用增强了蓝色荧光,通过荧光分析实现了 MG 双逆信号的高灵敏度、高准确性和可视化检测。该探针在 0.1-100 μmol/L 的较宽范围内表现出良好的线性关系,检测限 (LOD) 为 20 nmol/L。通过集成智能手机摄影和 RGB(红、绿、蓝)分析,可以在 5 分钟内对水和实际鱼类样品中的 MG 进行准确的定量分析。该开发平台具有简单、经济高效、快速的优点,有望在实际应用中实现 MG 的现场检测。因此,它可能为现场评估食品安全和环境健康开辟新途径。

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