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亲水聚合物整体柱毛细管微萃取在线与 ICPMS 联用测定环境水中含羧基的金纳米粒子。

Hydrophilic polymer monolithic capillary microextraction online coupled to ICPMS for the determination of carboxyl group-containing gold nanoparticles in environmental waters.

机构信息

Key Laboratory of Analytical Chemistry for Biology and Medicine (Ministry of Education), Department of Chemistry, Wuhan University , Wuhan, Hubei 430072, P. R. China.

出版信息

Anal Chem. 2015 Feb 3;87(3):1789-96. doi: 10.1021/ac503798c. Epub 2015 Jan 22.

Abstract

In this study, the hydrophilic polymer monolithic capillary (poly(acrylamide-vinylpyridine-methylene bis(acrylamide)), poly(AA-VP-Bis)) was prepared for the separation and enrichment of carboxyl group-containing gold nanoparticles (Au NPs) from environmental waters followed by online ICPMS determination. The extraction mechanism of the prepared poly(AA-VP-Bis) monolithic capillary for Au NPs is based on the static electrical and hydrogen bond interactions between the carboxyl group on the surface of Au NPs and pyridine/amide groups on the surface of the monolith. Under the optimal conditions, a detection limit of 24.2 fmol L(-1) and a sample throughput of 6 h(-1) were achieved for 3 nm citrate stabilized Au NPs, and the original morphology of the Au NPs could be maintained during the extraction process. The developed method was successfully applied for the analysis of carboxyl group-containing Au NPs in environmental water samples, such as tap water, the Yangtze River water, and the East Lake water, with recoveries in the range of 77-103%. Compared with the reported approaches for analysis of Au NPs, this method is an online strategy for carboxyl group-containing Au NPs determination and has the merits of low detection limit, small sample consumption, fast extraction/desorption kinetics, wide linear range, high selectivity, and high throughput.

摘要

在这项研究中,制备了亲水性聚合物整体毛细管(聚(丙烯酰胺-乙烯基吡啶-亚甲基双(丙烯酰胺)),poly(AA-VP-Bis)),用于从环境水中分离和富集含羧基的金纳米粒子(Au NPs),然后进行在线 ICPMS 测定。制备的 poly(AA-VP-Bis)整体毛细管对 Au NPs 的萃取机制基于 Au NPs 表面上的羧基与整体表面上的吡啶/酰胺基团之间的静电和氢键相互作用。在最佳条件下,对于 3nm 的柠檬酸盐稳定的 Au NPs,检测限为 24.2 fmol L(-1),样品通量为 6 h(-1),并且在萃取过程中可以保持 Au NPs 的原始形态。该方法成功应用于环境水样中含羧基的 Au NPs 的分析,如自来水、长江水和东湖水,回收率在 77-103%之间。与报道的 Au NPs 分析方法相比,该方法是一种在线策略,用于测定含羧基的 Au NPs,具有检测限低、样品消耗少、萃取/解吸动力学快、线性范围宽、选择性高、通量高等优点。

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