首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Preparation and electrochromatographic characterization of methacrylate-based weak cation exchange columns for capillary electrochromatography
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Preparation and electrochromatographic characterization of methacrylate-based weak cation exchange columns for capillary electrochromatography

机译:基于甲基丙烯酸酯的毛细管电色谱弱阳离子交换柱的制备及电色谱表征

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Polymethacrylate based monolithic columns with weak cation exchange (WCX) properties were synthesized in fused silica capillary columns by capillary electrochromatography. Monolithic columns were prepared by in situ copolymerization of butyl methacrylate, ethylene dimethacrylate and N-methacryloyl-l-glutamic acid (MAGA) in a binary porogenic solvent composed of N,N-dimethyl formamide and phosphate buffer. The carboxyl groups provided by the monomer MAGA on the surface of the stationary phases generated the EOF from anode to cathode, and served as the WCX stationary phase at the same time. One of the originalities of this study was to make it clear the effect of MAGA as a novel weak cation exchange monomer in capillary columns. In this respect, in addition, the weak cation exchange character of MAGA, the effect of MAGA percentage on the electroosmotic mobility and column efficiency were investigated. The prepared columns were evaluated by SEM microphotographs and characterized with regard to the separation of alkyl benzenes. The monoliths prepared under optimized polymerization conditions were successfully characterized by using alkyl benzenes. The applied voltage was changed between 5 kV and 30 kV for separation of alkyl benzenes. The total analysis time of alkyl benzenes was shortened approximately tenfold (i.e. from 60 to 6 min). The synthesised monoliths contained ionizable carboxylic acid groups, which exhibited cation-exchange capability, that are useful for weak cation exchange chromatography. The applications of the optimized column were demonstrated using phenolic compounds and underivatized amino acids. The separation of phenolic compounds was achieved using a mobile phase consisting of 40/60% ACN/PB (10.0 mM, pH 7.0). The theoretical plate number up to 190 000 plates per m was achieved in the separation of phenols. The stability of the column was tested by conducting repeated analyses.
机译:通过毛细管电色谱法在熔融石英毛细管柱中合成了具有弱阳离子交换(WCX)性能的基于聚甲基丙烯酸酯的整体柱。通过在由N,N-二甲基甲酰胺和磷酸盐缓冲液组成的二元成孔溶剂中将甲基丙烯酸丁酯,二甲基丙烯酸乙烯酯和N-甲基丙烯酰基-1-谷氨酸(MAGA)原位共聚制备整体柱。单体MAGA在固定相表面上提供的羧基从阳极到阴极生成EOF,并同时用作WCX固定相。这项研究的独创性之一是要弄清MAGA作为毛细管柱中新型弱阳离子交换单体的作用。在这方面,还研究了MAGA的弱阳离子交换特性,MAGA百分比对电渗迁移率和柱效率的影响。通过SEM显微照片评估所制备的柱,并就烷基苯的分离进行表征。通过使用烷基苯成功地表征了在优化聚合条件下制备的整料。施加的电压在5 kV和30 kV之间变化,以分离烷基苯。烷基苯的总分析时间缩短了大约十倍(即从60分钟缩短到6分钟)。合成的整体结构包含可电离的羧酸基团,该基团具有阳离子交换能力,可用于弱阳离子交换色谱。使用酚类化合物和未衍生的氨基酸证明了优化柱的应用。使用由40/60%ACN / PB(10.0 mM,pH 7.0)组成的流动相实现酚类化合物的分离。在酚的分离中,理论塔板数达到了每米190 000塔板。通过进行重复分析来测试色谱柱的稳定性。

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