[Recent advances in the applications of metal-organic frameworks-based molecularly imprinted materials].

IF 1.2 4区 化学 Q4 CHEMISTRY, ANALYTICAL
Wei Liu, Dong-Xue Jia, Wen-Hui Lian, Yu Zhao
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引用次数: 0

Abstract

Molecularly imprinted polymers have received wide attention from various fields owing to their pre-designable, recognition ability, and practicality. However, the disadvantages of the traditional embedding method, which include a slow recognition rate, uneven site recognition, low binding capacity, and incomplete template molecule elution, limit the development of molecular imprinting technology. Surface molecular imprinting techniques have been developed to effectively solve these problems, and different materials are used as carriers in the synthesis of molecularly imprinted polymers. Metal-organic frameworks (MOFs) show great potential as carriers. Because of their high porosity and specific surface area, MOFs can provide a large number of active sites for molecular imprinting, which can improve their detection sensitivity. The variable metal centers and organic ligands of MOF materials can also lead to multiple structures and functions. Numerous types of MOF materials have been synthesized, and the properties of these materials can be tailored by adjusting their pore size and introducing functional groups. MOFs and molecular imprinting technology can be combined to take full advantage of the specific adsorption of molecular imprinting technology and the large specific surface area and multiple active sites of MOFs, thereby expanding the application range of the resulting materials. In this paper, five aspects of the concept of MOF functionalization are discussed: introduction of special ligands, regulation of metal central sites, formation of MOF complexes, derivatization of MOFs, and sacrificial MOFs. The applications of MOF-based molecularly imprinted materials in catalysis, sample pretreatment, drug carriers, fluorescence sensors, and electrochemical sensors are also reviewed. Finally, the existing problems and future development of MOF-based molecularly imprinted materials are discussed and prospected.

[基于金属有机框架的分子印迹材料应用的最新进展]。
分子印迹聚合物因其可预设计性、可识别性和实用性而受到了广泛关注。然而,传统的嵌入方法存在着识别速度慢、位点识别不均匀、结合能力低、模板分子洗脱不完全等缺点,限制了分子印迹技术的发展。表面分子印迹技术的发展有效地解决了这些问题,并利用不同的材料作为载体来合成分子印迹聚合物。金属有机骨架(mof)作为载体具有很大的潜力。由于mof具有较高的孔隙率和比表面积,可以为分子印迹提供大量的活性位点,从而提高其检测灵敏度。MOF材料的可变金属中心和有机配体也可以导致多种结构和功能。许多类型的MOF材料已经被合成,这些材料的性能可以通过调整孔径和引入官能团来定制。mof与分子印迹技术相结合,可以充分利用分子印迹技术的特异性吸附以及mof的大比表面积和多活性位点,从而扩大所制备材料的应用范围。本文从五个方面讨论了MOF功能化的概念:特殊配体的引入、金属中心位点的调控、MOF配合物的形成、MOF的衍生化和牺牲MOF。综述了mof基分子印迹材料在催化、样品预处理、药物载体、荧光传感器和电化学传感器等方面的应用。最后,对mof基分子印迹材料存在的问题和未来的发展进行了讨论和展望。
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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来源期刊
色谱
色谱 CHEMISTRY, ANALYTICAL-
CiteScore
1.30
自引率
42.90%
发文量
7198
期刊介绍: "Chinese Journal of Chromatography" mainly reports the basic research results of chromatography, important application results of chromatography and its interdisciplinary subjects and their progress, including the application of new methods, new technologies, and new instruments in various fields, the research and development of chromatography instruments and components, instrument analysis teaching research, etc. It is suitable for researchers engaged in chromatography basic and application technology research in scientific research institutes, master and doctoral students in chromatography and related disciplines, grassroots researchers in the field of analysis and testing, and relevant personnel in chromatography instrument development and operation units. The journal has columns such as special planning, focus, perspective, research express, research paper, monograph and review, micro review, technology and application, and teaching research.
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