[Research advance of solid-phase microextraction based on covalent organic framework materials].

Ying-Chao Cheng, Yi-Yang Gao, Xiao-Min Li, Lu-Yu Chen, Fang DU, Jie Guo, Yi-Tong Meng, Min Sun, Juan-Juan Feng
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Abstract

Solid-phase microextraction (SPME) is a fast and simple sample preparation technique that enables the enrichment of analytes, and it is used in combination with other detection techniques to provide accurate and sensitive analytical methods. SPME is widely used in environmental monitoring, food safety, life analysis, biomedicine, and other applications. The extractive coating is the core of the SPME technique, and the properties of the extractive coating greatly influence extraction selectivity and efficiency, as well as the enrichment effect. Therefore, the development of new and efficient extractive coating materials remains a hot topic in the analytical chemistry and sample preparation fields. Covalent organic frameworks (COFs) are a kind of porous crystalline network polymer materials formed by covalent bonds. Owing to the advantages of large specific surface area, high porosity, good stability, high designability, simple synthesis and post-modification, etc., it has been widely used in gas adsorption, catalysis, sensing and drug delivery. In recent years, COFs have attracted much attention in the field of sample preparation. A variety of novel COF-based SPME materials had been developed for extracting and enriching various types of analytes through π-π interaction, hydrophilic/hydrophobic interaction, electrostatic adsorption, and hydrogen-bonding, as well as pore effects. In this paper, the research advances of COFs for using in fiber-, in tube-, and membrane-based SPME over the past three years were discussed. Fiber surfaces had been modified with functionalized COFs or COF-hybrid materials for use in SPME through physical coating, in-situ growth, and chemical-bonding approaches. The combination of SPME fiber and chromatographic analysis can be used to detect a variety of analytes such as polycyclic aromatic hydrocarbons, phthalates, polychlorinated biphenyls, and pesticides in environmental and food samples, with good enrichment effects, wide linear ranges, and high sensitivity. Based on in tube-SPME, COFs-based monolithic column and fiber-filled tube as the extraction tubes were combined with high performance liquid chromatography online to develop highly sensitive detection methods for synthetic phenolic antioxidants and bisphenol compounds, respectively. In addition, COFs had also been used in membrane SPME technique, showing high efficiency in the extraction of trace polychlorinated biphenyls in environmental water. Finally, the development trends of COFs in the field of SPME was prospected.

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基于共价有机骨架材料的固相微萃取研究进展
固相微萃取(SPME)是一种快速、简单的样品制备技术,可以使分析物富集,并与其他检测技术结合使用,提供准确、灵敏的分析方法。SPME广泛应用于环境监测、食品安全、生命分析、生物医学等领域。萃取包层是SPME技术的核心,萃取包层的性能对萃取选择性、萃取效率和富集效果有很大影响。因此,开发新型高效萃取涂层材料一直是分析化学和样品制备领域的研究热点。共价有机骨架(COFs)是一种由共价键形成的多孔晶体网状高分子材料。由于具有比表面积大、孔隙率高、稳定性好、可设计性高、合成和后修饰简单等优点,在气体吸附、催化、传感和药物传递等方面得到了广泛的应用。近年来,COFs在样品制备领域受到了广泛的关注。利用π-π相互作用、亲疏水相互作用、静电吸附、氢键和孔隙效应,开发了多种新型cof基SPME材料,用于提取和富集各种类型的分析物。本文综述了近三年来COFs在纤维基、管基和膜基SPME中的研究进展。通过物理涂层、原位生长和化学键合等方法,用功能化COFs或COFs杂化材料修饰纤维表面,用于SPME。SPME纤维与色谱分析相结合,可用于环境和食品样品中多环芳烃、邻苯二甲酸酯、多氯联苯、农药等多种分析物的检测,富集效果好,线性范围宽,灵敏度高。以管内spme为基础,将cofs整体柱和纤维填充管作为提取管与高效液相色谱在线结合,分别建立了高灵敏度的合成酚类抗氧化剂和双酚类化合物的检测方法。此外,COFs还应用于膜SPME技术,对环境水中痕量多氯联苯的提取效果良好。最后,展望了COFs在SPME领域的发展趋势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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