有序多孔材料在色谱分离分析中的应用

Zhao-Xu Wang, Duan-da Wang, Shu-Tao Wang, Yong-Yang Song
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引用次数: 0

摘要

色谱法是一种高效、选择性的分离技术,具有广泛的应用前景和广阔的发展前景。色谱柱的固定相是色谱的重要组成部分,因此开发具有高分辨分离性能的高级固定相材料一直是该领域的研究热点。在这方面,有序多孔材料(OPMs)的优势在于其具有精确可控的孔径、形态和有序排列的孔结构,能够准确筛选不同大小和形状的分子,减少分子在流动路径中的无序扩散。该材料克服了传统色谱材料分离精度的限制,有效解决了科研和工业在原料和产品提纯中面临的难题。在过去的几十年里,各种新的OPMs被开发出来,并被用作色谱柱的固定相基质。这些材料能够高效、快速地分离同源物、异构体、同位素和其他具有相似性质的物质,并提供了优异的色谱分离和分析结果。本文首先从理论上讨论了有序多孔结构对色谱分离过程中色谱柱效率和分辨率的影响,为OPMs作为固定相在色谱中的应用提供了理论基础。本文综述了几种用于色谱分离和分析的OPM类型的研究进展,包括金属有机框架(MOFs)、共价有机框架(COFs)、多孔有机笼(POCs)、介孔二氧化硅材料、嵌段共聚物(BCP)组件和高内相乳液聚合物(PolyHIPEs)。最后讨论了色谱OPMs目前面临的挑战和未来的发展方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

[Applications of ordered porous materials in chromatography separation and analysis].

[Applications of ordered porous materials in chromatography separation and analysis].

Chromatography, a highly efficient and selective separation technology, is broadly applicable and exhibits a range of developmental prospects. The stationary phase of a chromatography column is the most important component of chromatography; hence, the development of advanced stationary-phase materials that exhibit highly resolved separation performance is a continuing research hotspot in this field. In this regard, ordered porous materials (OPMs) are advantageous owing to their precisely controllable pore sizes, morphologies, and regularly arranged pore structures, which are capable of accurately sieving molecules of different sizes and shapes, and reducing disordered molecular diffusion in the flow path. Such materials overcome the limitation of separation accuracy of traditional chromatographic materials, and effectively solve the problems faced by scientific research and industry in the purification of raw materials and products. Over the past few decades, a variety of new OPMs have been developed and used as stationary-phase matrices in chromatography columns. These materials have efficiently and rapidly separated homologues, isomers, isotopes, and other substances with similar properties, and have delivered excellent chromatographic separation and analysis results. In this review, we first discuss the influence of ordered porous structures on column efficiency and resolution during chromatographic separation from a theoretical perspective, which provides a basis for the use of OPMs as stationary phases in chromatography. This review then summarizes research progress on several different OPM types for use in chromatographic separation and analysis applications, including metal organic frameworks (MOFs), covalent organic frameworks (COFs), porous organic cages (POCs), mesoporous silica materials, block copolymer (BCP) assemblies, and high internal-phase emulsion polymers (PolyHIPEs). The review concludes by discussing current challenges faced by chromatographic OPMs as well as directions for future development.

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