Magnetic covalent organic frameworks-based adsorbents in solid phase extraction of trace analytes in environmental samples

IF 11.1 2区 化学 Q1 CHEMISTRY, ANALYTICAL Trends in Environmental Analytical Chemistry Pub Date : 2023-11-17 DOI:10.1016/j.teac.2023.e00222
Qamar Salamat , Mustafa Soylak
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Abstract

Magnetic covalent organic frameworks (MCOFs) are a new class of emerging material as a super-effective magnetic adsorbent in analytical chemistry, particularly for environmental analysis, due to their outstanding features such as special morphology, cost-effective synthesis, chemical and thermal stability, a large specific surface area, high adsorption capacity, strong π-π interactions with analytes, uniform pore size, high reusability, and facile magnetic recovery. Based on the current research, after describing the diverse synthesis methods of MCOFs with various geometries that give them their unique physicochemical properties, this review emphasizes the great potential applications of MCOFs as an adsorbent in the magnetic solid phase extraction method in environmental analysis for pesticide residues, polycyclic aromatic hydrocarbons, drugs, endocrine-disrupting chemicals, heavy metal ions, marine biotoxin, and other environmental contaminants. In addition, difficulties and future prospects in the development of MCOFs for environmental analysis have been examined.

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磁性共价有机骨架吸附剂在固相萃取环境样品中痕量分析物中的应用
磁性共价有机框架(MCOFs)是一种新型的超有效的磁性吸附剂,在分析化学,特别是环境分析中,由于其突出的特点,如特殊的形态,经济高效的合成,化学和热稳定性,大的比表面积,高的吸附能力,强π-π相互作用与分析物,均匀的孔径,高的可重复使用性,和容易的磁回收。基于目前的研究现状,本文介绍了不同形状的MCOFs的合成方法,这些方法使MCOFs具有独特的物理化学性质,重点介绍了MCOFs作为吸附剂在磁性固相萃取法中对农药残留、多环芳烃、药物、内分泌干扰物、重金属离子、海洋生物毒素等环境污染物的环境分析中的巨大应用前景。此外,还分析了环境分析用MCOFs发展的难点和前景。
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来源期刊
Trends in Environmental Analytical Chemistry
Trends in Environmental Analytical Chemistry Chemistry-Analytical Chemistry
CiteScore
21.20
自引率
2.70%
发文量
34
审稿时长
44 days
期刊介绍: Trends in Environmental Analytical Chemistry is an authoritative journal that focuses on the dynamic field of environmental analytical chemistry. It aims to deliver concise yet insightful overviews of the latest advancements in this field. By acquiring high-quality chemical data and effectively interpreting it, we can deepen our understanding of the environment. TrEAC is committed to keeping up with the fast-paced nature of environmental analytical chemistry by providing timely coverage of innovative analytical methods used in studying environmentally relevant substances and addressing related issues.
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