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一种基于蒽的含二硫缩醛汞荧光探针:合成简便、选择性高、灵敏度高及具有双模式检测能力

An Anthracene-Based Hg Fluorescent Probe with Dithioacetal: Simple Synthesis, High Selectivity and Sensitivity, and Dual-Mode Detection Capability.

作者信息

Ren Hongli, Yan Qiang

机构信息

State Key Laboratory of Polymer Molecular Engineering of Polymers, Department of Macromolecular Science, Fudan University, Shanghai 200438, China.

出版信息

Molecules. 2025 Jan 26;30(3):561. doi: 10.3390/molecules30030561.

Abstract

With the development of the chemical industry, the threat of mercury pollution to human health is increasing. Therefore, it is necessary to develop a low-cost, convenient and efficient Hg detection method. In this study, anthracene-based Hg fluorescent probes AN-2S and AN-4S were synthesized by a dithioacetal reaction for the rapid and efficient detection of the Hg concentration in water. Through molecular structure design and synthesis route optimization, the complexity and cost of the probe synthesis were greatly reduced. AN-2S and AN-4S had good water solubility, rapid response abilities and anti-interference abilities, and could specifically detect Hg using "turn-off" or "turn-on" detection modes within 1 min. The AN-4S probe showed a wide linear response range (040 μmol/L) and high sensitivity (4.93 × 10 mol/L) to Hg in 99% aqueous solutions, over a pH range of 513. The reaction mechanism between the probe and Hg was determined using 1H NMR and FT-IR spectra and Job's curves. It was proven that the AN-2S and AN-4S probes react with Hg in a molar ratio of 1:1 or 1:2. The dual-detection mode enabled the probes to be used not only for the accurate quantitative detection of Hg under a fluorescence spectrometer, but also for rapid qualitative analysis using a UV flashlight as a test strip, showing a broad practical application potential.

摘要

随着化学工业的发展,汞污染对人类健康的威胁日益增加。因此,有必要开发一种低成本、便捷且高效的汞检测方法。在本研究中,通过二硫缩醛反应合成了基于蒽的汞荧光探针AN-2S和AN-4S,用于快速高效地检测水中汞的浓度。通过分子结构设计和合成路线优化,大大降低了探针合成的复杂性和成本。AN-2S和AN-4S具有良好的水溶性、快速响应能力和抗干扰能力,能够在1分钟内使用“关断”或“开启”检测模式特异性检测汞。AN-4S探针在99%的水溶液中,在pH值为5至13的范围内,对汞表现出宽线性响应范围(0~40 μmol/L)和高灵敏度(4.93×10 mol/L)。利用1H NMR、FT-IR光谱和Job曲线确定了探针与汞之间的反应机理。结果表明,AN-2S和AN-4S探针与汞的反应摩尔比为1:1或1:2。这种双检测模式使探针不仅能够在荧光光谱仪下对汞进行准确定量检测,还能够使用紫外线手电筒作为试纸进行快速定性分析,显示出广阔的实际应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/32e7/11820999/964760eb5e60/molecules-30-00561-sch001.jpg

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