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昆明理工大学 理学院,云南 昆明 650500
许志刚,博士,教授,研究方向:样品前处理技术、色谱分析,E-mail:chemxuzg@kust.edu.cn
纸质出版日期:2025-01-15,
收稿日期:2024-07-16,
修回日期:2024-08-14,
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王思涛,刘智敏,许志刚.表面印迹微球在水相介质样品前处理中的应用研究进展[J].分析测试学报,2025,44(01):61-72.
WANG Si-tao,LIU Zhi-min,XU Zhi-gang.Advances in the Application of Surface-imprinted Microspheres for Sample Pretreatment in Aqueous Media[J].Journal of Instrumental Analysis,2025,44(01):61-72.
王思涛,刘智敏,许志刚.表面印迹微球在水相介质样品前处理中的应用研究进展[J].分析测试学报,2025,44(01):61-72. DOI: 10.12452/j.fxcsxb.240716224.
WANG Si-tao,LIU Zhi-min,XU Zhi-gang.Advances in the Application of Surface-imprinted Microspheres for Sample Pretreatment in Aqueous Media[J].Journal of Instrumental Analysis,2025,44(01):61-72. DOI: 10.12452/j.fxcsxb.240716224.
氢键通常是分子印迹聚合物识别模板分子的主要机制,由于水分子等诸多影响因素带来的干扰,有效识别水环境中的分析物一直是分子印迹技术面临的一大挑战。表面印迹微球具有比表面积大和易于修饰等特性,能够被灵活运用以满足各种水相样品前处理的需求,是克服水相识别困难的有效方法之一。该文综述了近年来水相识别表面印迹微球的各种制备策略及其代表性应用,包括不同基底、亲水性识别、非氢键的协同识别和基于特殊组件的表面印迹微球;从作用力和识别机制层面讨论了在水相介质中识别分子时的干扰因素及其调控策略,并进一步介绍了表面印迹微球在水相样品前处理中的应用;最后探讨了表面印迹微球在水相样品前处理领域面临的挑战及未来研究趋势。
Hydrogen bonding was usually the main mechanism for molecularly imprinted polymers to recognize template molecules. Due to the interference of many influencing factors such as water molecules,efficient identification of analytes in water environment has always been a major challenge for molecularly imprinted techniques. Surface-imprinted microspheres had the characteristics of large surface area and easy modification,which could be flexibly applied to meet the needs of various aqueous sample pretreatments,which was one of the effective methods to overcome the difficulties of aqueous phase identification. This paper reviewed various preparation strategies for aqueous-phase recognition of surface-imprinted microspheres and their representative applications in recent years,including surface-imprinted microspheres with different substrates,hydrophilic recognition,non-hydrogen-bonded synergistic recognition,and those based on special components. Various interfering factors and their regulatory strategies in the recognition of molecules in aqueous media were discussed in depth on the aspects of forces and recognition mechanisms. The application of surface-imprinted microspheres in the pretreatment of aqueous samples was further presented. Finally,the challenges and future research trends of surface-imprinted microspheres in the field of aqueous sample pretreatment were discussed.
表面印迹微球水相识别样品前处理制备策略
surface-imprinted microspheresaqueous recognitionsample pretreatmentpreparation strategy
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