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提高聚合物整体柱用于分析分离性能的最新策略。

Recent strategies to enhance the performance of polymer monoliths for analytical separations.

作者信息

Maya Fernando, Paull Brett

机构信息

Australian Centre for Research on Separation Science (ACROSS), School of Natural Sciences-Chemistry, University of Tasmania, Hobart, TAS, Australia.

出版信息

J Sep Sci. 2019 Apr;42(8):1564-1576. doi: 10.1002/jssc.201801126. Epub 2019 Mar 3.

Abstract

This review summarizes recent developments made in the incorporation of functional materials into organic polymer monoliths, together with new monolithic forms and formats, which enhance their application as supports and stationary phase materials for sample preparation and chromatographic separations. While polymer monoliths are well-known supports for the separation of large molecules, recent developments have been made to improve their features for the separation of small molecules. The selectivity and performance of organic polymer monoliths has been improved by the incorporation of different materials, such as metal-organic frameworks, covalent organic frameworks, or other types of nanostructured materials (carbon nanohorns, nanodiamonds, polyoxometalates, layered double hydroxides, or attapulgite). The surface area of polymer monoliths has been significantly increased by polymer hypercrosslinking, resulting in increased efficiency when applied to the separation of small molecules. In addition, recent exploration of less conventional supports for casting polymer monoliths, including photonic fibres and 3D printed materials, has opened new avenues for the applications of polymer monoliths in the field of separation science. Recent developments made in these topics are covered, focusing on the strategies followed by the authors to prepare the polymer monoliths and the effect of these modifications on the developed analytical applications.

摘要

本综述总结了将功能材料引入有机聚合物整体柱的最新进展,以及新的整体柱形式和形态,这些进展增强了其作为样品制备和色谱分离的载体及固定相材料的应用。虽然聚合物整体柱是分离大分子的知名载体,但最近已在改进其分离小分子的特性方面取得了进展。通过掺入不同材料,如金属有机框架、共价有机框架或其他类型的纳米结构材料(碳纳米角、纳米金刚石、多金属氧酸盐、层状双氢氧化物或凹凸棒石),有机聚合物整体柱的选择性和性能得到了改善。通过聚合物超交联,聚合物整体柱的表面积显著增加,从而在应用于小分子分离时提高了效率。此外,最近对用于浇铸聚合物整体柱的不太传统的载体(包括光子纤维和3D打印材料)的探索,为聚合物整体柱在分离科学领域的应用开辟了新途径。本文涵盖了这些主题的最新进展,重点关注作者制备聚合物整体柱所采用的策略以及这些修饰对所开发分析应用的影响。

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