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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Chromatographic evaluation of reversed-phase/anion-exchange/cation-exchange trimodal stationary phases prepared by electrostatically driven self-assembly process
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Chromatographic evaluation of reversed-phase/anion-exchange/cation-exchange trimodal stationary phases prepared by electrostatically driven self-assembly process

机译:静电驱动自组装过程制备的反相/阴离子交换/阳离子交换三峰固定相的色谱分析

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This work describes chromatographic properties of reversed-phase/cation-exchange/anion-exchange trimodal stationary phases. These stationary phases were based on high-purity porous spherical silica particles coated with nano-polymer beads using an electrostatically driven self-assembly process. The inner-pore area of the material was modified covalently with an organic layer that provided both reversed-phase and anion-exchange properties while the outer surface was coated with nano-sized polymer beads with strong cation-exchange characteristics. This design ensured spatial separation of the anion-exchange and the cation-exchange regions, and allowed reversed-phase, anion-exchange and cation-exchange retention mechanisms to function simultaneously. Chromatographic evaluation of ions and small molecules suggested that retention of ionic analytes was influenced by the ionic strength, pH, and mobile phase organic solvent content, and governed by both ion-exchange and hydrophobic interactions. Meanwhile, neutral analytes were retained by hydrophobic interaction and was mainly affected by mobile phase organic solvent content. Depending on the specific application, selectivity could be optimized by adjusting the anion-exchange/cation-exchange capacity ratio (selectivity), which was achieved experimentally by using porous silica particles with different surface areas.
机译:这项工作描述了反相/阳离子交换/阴离子交换三峰固定相的色谱性质。这些固定相基于使用静电驱动的自组装工艺涂覆有纳米聚合物珠粒的高纯度多孔球形二氧化硅颗粒。材料的内孔区域被有机层共价修饰,该有机层同时具有反相和阴离子交换特性,而外表面则涂覆有具有强阳离子交换特性的纳米级聚合物珠。该设计确保了阴离子交换区域和阳离子交换区域的空间分隔,并允许反相,阴离子交换和阳离子交换保留机制同时发挥作用。离子和小分子的色谱分析表明,离子分析物的保留受到离子强度,pH和流动相有机溶剂含量的影响,并受离子交换和疏水相互作用的控制。同时,中性分析物通过疏水作用保留,并且主要受流动相有机溶剂含量的影响。根据具体应用,可以通过调节阴离子交换/阳离子交换容量比(选择性)来优化选择性,这是通过使用具有不同表面积的多孔二氧化硅颗粒通过实验实现的。

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