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Ratiometric Fluorescent Nanoprobe for Highly Sensitive Determination of Mercury Ions

机译:高灵敏度测定汞离子的比例荧光纳米探针

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摘要

In this study, a novel dual-emission ratiometric fluorescent nanoprobe (RFN) was synthesized and ultilized for highly sensitive determination of mercury ions. In this nanoprobe, fluorescein isothiocyanate (FITC) doped silica (SiO2) served as a reference signal, FITC–SiO2 microspheres were synthesized and modified with amino groups, and then Au Nanoclusters (AuNCs) were combined with the amino groups on the surface of the FITC–SiO2 microspheres to obtain the RFN. The selectivity, stability, and pH of the RFN were then optimized, and the determination of mercury ions was performed under optimal conditions. The probe fluorescence intensity ratio (F520 nm/F680 nm) and Hg2+ concentration (1.0 × 10−10 mol/L to 1.0 × 10−8 mol/L) showed a good linear relationship, with a correlation coefficient of R2 = 0.98802 and a detection limit of 1.0 × 10−10 mol/L, respectively. The probe was used for the determination of trace mercury ion in water samples, and the recovery rate was 98.15~100.45%, suggesting a wide range of applications in monitoring pollutants, such as heavy metal ion and in the area of environmental protection.
机译:在这项研究中,合成了一种新型的双发射比例荧光纳米探针(RFN),并用于高灵敏度测定汞离子。在该纳米探针中,异硫氰酸荧光素(FITC)掺杂的二氧化硅(SiO2)作为参考信号,合成FITC-SiO2微球并用氨基进行修饰,然后将金纳米团簇(AuNCs)与氨基表面上的氨基结合FITC-SiO2微球获得RFN。然后优化RFN的选择性,稳定性和pH,并在最佳条件下进行汞离子的测定。探针荧光强度比(F520 nm / F680 nm)和Hg 2 + 浓度(1.0×10 -10 mol / L至1.0×10 -8 < / sup> mol / L)表现出良好的线性关系,相关系数R 2 = 0.98802,检出限为1.0×10 -10 mol / L,分别。该探针用于水样中痕量汞离子的测定,回收率为98.15〜100.45%,在监测重金属离子等污染物和环境保护领域具有广泛的应用前景。

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