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有序介孔硅材料在固相萃取中的最新进展。

Recent advances of ordered mesoporous silica materials for solid-phase extraction.

机构信息

School of Narcotics Control and Public Order Studies, School of Forensic Science, Criminal Investigation Police University of China, Shenyang 110854 P. R. China.

School of Chemistry and Chemical Engineering, University of Jinan, Jinan 250022, P. R. China.

出版信息

J Chromatogr A. 2022 Jul 19;1675:463157. doi: 10.1016/j.chroma.2022.463157. Epub 2022 May 19.

Abstract

This review mainly focuses on the development and application of ordered mesoporous silica materials for solid-phase extraction in recent years. It overviews not only bare mesoporous silica but also the functionalized mesoporous silica with organic groups, molecularly imprinted polymers, and magnetic materials. These mesoporous silica materials were used as the extraction adsorbents in cartridge solid-phase extraction, dispersive solid-phase extraction, magnetic solid-phase extraction, micro-solid-phase extraction and matrix solid phase dispersion. Coupled with atomic emission spectrometry, chromatography or other detection methods, these techniques efficiently extracted and sensitively determined various targets, such as metal ions, perfluorocarboxylic acids, pesticides, drugs, endocrine disruptors, phenols, flavanones, polycyclic aromatic hydrocarbons, parabens and so on. Based on unique advantages of mesoporous silica materials, the developed analytical method successfully analyzed different matrix samples, like environmental water samples, soil samples, food samples, biological samples and cosmetics. In addition, the prospects of these materials in solid-phase extraction are presented, which can offer an outlook for the further development and applications.

摘要

本文主要综述了近年来有序介孔硅材料在固相萃取中的发展和应用。综述内容不仅包括纯介孔硅材料,还包括有机功能化介孔硅材料、分子印迹聚合物和磁性材料。这些介孔硅材料被用作萃取吸附剂,应用于管柱固相萃取、分散固相萃取、磁固相萃取、微固相萃取和基质固相分散。这些技术与原子发射光谱法、色谱法或其他检测方法联用,可高效萃取并灵敏测定各种目标物,如金属离子、全氟羧酸、农药、药物、内分泌干扰物、酚类、黄烷酮类、多环芳烃、对羟基苯甲酸酯等。基于介孔硅材料的独特优势,所开发的分析方法成功分析了不同基质样品,如环境水样、土壤样品、食品样品、生物样品和化妆品。此外,还对这些材料在固相萃取中的应用前景进行了展望,为其进一步发展和应用提供了参考。

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