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Characterization and quantification of silver nanoparticles in nutraceuticals and beverages by asymmetric flow field flow fractionation coupled with inductively coupled plasma mass spectrometry

机译:营养品和饮料中银纳米颗粒的不对称流场流动分离-电感耦合等离子体质谱法的表征和定量

摘要

This study evaluated the feasibility of asymmetric flow field flow fractionation coupled with inductively coupled plasma mass spectrometry (AF4-ICP-MS) for separation, characterization and quantification of silver nanoparticles (AgNPs) in complex nutraceutical and beverage samples. For improved determination, different analysis conditions were proposed depending on the NP size, i.e. below 20nm and in the 20-60nm range. After optimization of the different experimental parameters affecting the AF4 separation process and the analyte detection, the proposed methods showed a wide dynamic linear range (i.e., in the 10-1000¿gL-1) and limits of detection below 28ngL-1. A previous probe ultrasonication for 90s (corresponding to 45 pulses of 2s) of the tested samples resulted in complete AgNPs disaggregation. As a result, a fast accurate determination was achieved (complete analysis was done in ca. 37min). The practicality of the proposed methodology for the intended determination was demonstrated by successful determination of the AgNPs present in a variety of nutraceuticals and a beverage at concentration levels in the 0.7-29.5×103¿gL-1 range. A good agreement was observed among these concentration data and those determined by more conventional sample preparation techniques, such as ultracentrifugation and acid digestion. Also, the estimated NP sizes using AF4 compared satisfactorily with those determined by image techniques, i.e. transmission electron microscopy (TEM). All together demonstrated the utility of this novel analytical methodology for the analysis of AgNPs of different size in complex matrices.
机译:这项研究评估了不对称流场流动分离与电感耦合等离子体质谱(AF4-ICP-MS)结合用于复杂营养食品和饮料样品中银纳米颗粒(AgNP)的分离,表征和定量的可行性。为了改进测定,提出了根据NP尺寸的不同分析条件,即低于20nm且在20-60nm范围内。经过优化影响AF4分离过程和分析物检测的不同实验参数后,所提出的方法显示出宽动态线性范围(即10-1000μg-1)和检测限低于28ngL-1。先前的90s超声波探头(对应于2s的45个脉冲)对AgNPs进行了完全分解。结果,实现了快速准确的测定(在约37分钟内完成了完整分析)。通过成功测定各种营养品和饮料中存在的浓度在0.7-29.5×103?gL-1范围内的AgNP,证明了拟议方法用于预期测定的实用性。在这些浓度数据中以及通过更常规的样品制备技术(例如超速离心和酸消解)测定的浓度数据中,观察到了很好的一致性。而且,使用AF4估算的NP尺寸与通过图像技术即透射电子显微镜(TEM)确定的NP尺寸令人满意。所有这些共同证明了这种新颖的分析方法在复杂基质中分析不同大小的AgNP的实用性。

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