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Anionic and cationic copolymerized ionic liquid-grafted silica as a multifunctional stationary phase for reversed-phase chromatography

机译:阴离子和阳离子共聚离子液体接枝二氧化硅作为反相色谱的多功能固定相

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摘要

Recently, we briefly reported a new method to prepare ionic liquid-modified silica via copolymerization of anionic and cationic monomer couples on mercaptyl-modified silica, which aimed to enhance the stability of the column during the use of buffer as a solvent. In this paper, the previously prepared copolymerized ionic liquid-grafted silica denoted Sil-P(lmC_(18)-SS) was characterized via elemental analysis, thermogravimetric analysis, and diffuse reflectance infrared Fourier transform spectroscopy. The reversed-phase chromatographic properties were determined particularly by separation of Tanaka test mixture, polycyclic aromatic hydrocarbons and their isomers, disubstituted benzenes, flavonoids, bases and nucleosides. Compared with the conventional ODS column, Sil-P(imC_(18)-SS) exhibited enhanced shape selectivity for polycyclic aromatic hydrocarbons and better performance for the separation of some polar analytes such as bases and flavonoids. Moreover, compared with previously reported ionic liquid-modified silica stationary phases, the anionic and cationic copolymerized stationary phase offers the advantage of increased stability given that the anions and cations of the ionic liquids were concomitantly immobilized on the silica.
机译:最近,我们简要地报道了一种通过在巯基改性的二氧化硅上进行阴离子和阳离子单体对的共聚制备离子液体改性的二氧化硅的新方法,其目的是在使用缓冲液作为溶剂时提高色谱柱的稳定性。在本文中,通过元素分析,热重分析和漫反射红外傅里叶变换光谱法对先前制备的共聚离子液体接枝二氧化硅表示为Sil-P(lmC_(18)-SS)进行了表征。尤其是通过分离田中试验混合物,多环芳烃及其异构体,双取代苯,类黄酮,碱和核苷来确定反相色谱性能。与传统的ODS色谱柱相比,Sil-P(imC_(18)-SS)对多环芳烃的形状选择性增强,并且对某些极性分析物(如碱和类黄酮)的分离性能更好。而且,与先前报道的离子液体改性的二氧化硅固定相相比,阴离子和阳离子共聚的固定相具有稳定性提高的优点,因为离子液体的阴离子和阳离子同时固定在二氧化硅上。

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