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Review of molecular imprinting polymer: basic characteristics and removal of phenolic contaminants based on the functionalized cyclodextrin monomer

机译:分子印迹聚合物研究进展:基于功能化环糊精单体的基本特性及酚类污染物去除

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摘要

Cyclodextrins (CDs) are formed of starch molecules that are linked together in a cyclic ring. They are composed of five or more (1, 4) connected D-glucopyranoside units. CDs have toroidal, hollow truncated cone structures with exterior hydrophilic edges and internal hydrophobic cavities. The numerous hydroxyl groups available in cyclodextrins are active sites capable of forming various sorts of connections. They can be cross-linked or derived to generate monomers able to form branching or linear networks. Furthermore, they can form inclusion complexes with a variety of guest molecules, including organic and inorganic molecules, thus changing their physicochemical properties, The modification of the imprinting method could produce molecularly imprinted polymers that are stable, dependable, long-lasting, selective, and cost-effective. As a result, molecularly imprinted polymers are becoming increasingly popular in chemical separation and analysis. As found in previous studies, the monomers of cyclodextrins used in molecular imprinting have a higher binding impact on target molecules. The purpose of this study is to highlight the application of imprinting technology utilizing cyclodextrins as a valuable functional monomer in the remediation of phenolic compounds by examining and assessing relevant works published in the literature. (C) 2022 Society of Chemical Industry (SCI).
机译:环糊精 (CD) 由淀粉分子形成,淀粉分子以环状连接在一起。它们由五个或更多 (1, 4) 个连接的 D-吡喃葡萄糖苷单元组成。CD具有环形,中空截锥结构,具有外部亲水边缘和内部疏水空腔。环糊精中存在的许多羟基是能够形成各种连接的活性位点。它们可以交联或衍生以生成能够形成分支或线性网络的单体。此外,它们可以与多种客体分子(包括有机分子和无机分子)形成包合物,从而改变其理化性质,对印迹法进行改性,可以生产出稳定、可靠、持久、选择性好、性价比高的分子印迹聚合物。因此,分子印迹聚合物在化学分离和分析中越来越受欢迎。正如先前的研究发现,用于分子印迹的环糊精单体对靶分子具有更高的结合影响。本研究旨在通过对文献中发表的相关著作进行检查和评估,重点介绍利用环糊精作为有价值的功能单体的印迹技术在酚类化合物修复中的应用。(C) 2022 年化学工业学会 (SCI)。

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