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首页> 外文期刊>Analytica chimica acta >Separating dissolved silver from nanoparticulate silver is the key: Improved cloud-point-extraction hyphenated to single particle ICP-MS for comprehensive analysis of silver-based nanoparticles in real environmental samples down to single-digit nm particle sizes
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Separating dissolved silver from nanoparticulate silver is the key: Improved cloud-point-extraction hyphenated to single particle ICP-MS for comprehensive analysis of silver-based nanoparticles in real environmental samples down to single-digit nm particle sizes

机译:从纳米颗粒银中分离溶解的银是关键:改善云点提取为单粒子ICP-MS,用于综合分析实际环境样品中的银基纳米粒子,下降到单位数NM粒子尺寸

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摘要

Investigating silver-based nanoparticles (Ag-b-NPs) in environmental samples is challenging with current analytical techniques, owing to their low concentrations (ng L-1) in the presence of high quantities of dissolved Ag(I) species. sp-ICP-MS is a promising technique able to simultaneously determine the concentration and particle sizes of Ag-b-NPs even at concentrations of several ng L-1. However, sp-ICPMS suffers from the coexistence of dissolved analyte species causing high background signals. These background signals cover particle signals and therefore limit the size detection limit (SDL) in sp-ICP-MS. Ag-b-NPs in environmental samples exhibit diameters of < 20 nm, whereas the current sp-ICP-MS approaches barely reach an SDL as low as 20 nm. Using a surfactant-mediated sample pre-treatment (improved cloud point extraction, iCPE), we were able to separate Ag-b-NPs in aqueous samples from dissolved Ag(I) species and enrich the NPs in the extract. By hyphenating iCPE to sp-ICP-MS, we were able to reach SDL values as low as 4.5 nm, thus paving the way for the successful monitoring of Ag-b-NPs in the environment. (C) 2021 Elsevier B.V. All rights reserved.
机译:研究环境样品中的银基纳米颗粒(Ag-b-NPs)具有挑战性,因为它们的浓度较低(ng L-1),且存在大量溶解的Ag(I)物种。sp-ICP-MS是一种很有前途的技术,能够同时测定Ag-b-NPs的浓度和粒径,即使在几个ng L-1的浓度下也是如此。然而,sp ICPMS存在溶解分析物共存的问题,导致高背景信号。这些背景信号涵盖了颗粒信号,因此限制了sp-ICP-MS中的尺寸检测限(SDL)。环境样品中的Ag-b-NPs直径小于20 nm,而当前的sp-ICP-MS方法几乎无法达到低至20 nm的SDL。使用表面活性剂介导的样品预处理(改进的浊点萃取,iCPE),我们能够从溶解的Ag(I)物种中分离水样中的Ag-b-NPs,并在提取物中富集NPs。通过将iCPE与sp ICP-MS联用,我们能够达到低至4.5 nm的SDL值,从而为环境中Ag-b-NPs的成功监测铺平了道路。(c)2021爱思唯尔B.V.保留所有权利。

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