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水中样品中金纳米粒子的原位悬浮聚集体微萃取及电热原子吸收光谱法测定

In-situ suspended aggregate microextraction of gold nanoparticles from water samples and determination by electrothermal atomic absorption spectrometry.

作者信息

Choleva Tatiana G, Kappi Foteini A, Tsogas George Z, Vlessidis Athanasios G, Giokas Dimosthenis L

机构信息

Department of Chemistry, University of Ioannina, 45110 Ioannina, Greece.

出版信息

Talanta. 2016 May 1;151:91-99. doi: 10.1016/j.talanta.2016.01.030. Epub 2016 Jan 15.

Abstract

This work describes a new method for the extraction and determination of gold nanoparticles in environmental samples by means of in-situ suspended aggregate microextraction and electrothermal atomic absorption spectrometry. The method relies on the in-situ formation of a supramolecular aggregate phase through ion-association between a cationic surfactant and a benzene sulfonic acid derivative. Gold nanoparticles are physically entrapped into the aggregate phase which is separated from the bulk aqueous solution by vacuum filtration on the surface of a cellulose filter in the form of a thin film. The film is removed from the filter surface and is dissociated into an acidified methanolic solution which is used for analysis. Under the optimized experimental conditions, gold nanoparticles can be efficiently extracted from water samples with recovery rates between 81.0-93.3%, precision 5.4-12.0% and detection limits as low as 75femtomolL(-1) using only 20mL of sample volume. The satisfactory analytical features of the method along with the simplicity indicate the efficiency of this new approach to adequately collect and extract gold nanoparticle species from water samples.

摘要

本工作描述了一种通过原位悬浮聚集体微萃取和电热原子吸收光谱法从环境样品中提取和测定金纳米颗粒的新方法。该方法依赖于通过阳离子表面活性剂与苯磺酸衍生物之间的离子缔合原位形成超分子聚集体相。金纳米颗粒被物理截留于聚集体相中,该聚集体相通过在纤维素滤膜表面进行真空过滤以薄膜形式与大量水溶液分离。将薄膜从滤膜表面取下并解离于酸化的甲醇溶液中用于分析。在优化的实验条件下,仅使用20mL样品体积,金纳米颗粒就能从水样中高效萃取,回收率在81.0 - 93.3%之间,精密度为5.4 - 12.0%,检测限低至75飞摩尔/升。该方法令人满意的分析特性以及简便性表明了这种新方法从水样中充分收集和萃取金纳米颗粒物种的有效性。

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