首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Advances in sol-gel based columns for capillary electrochromatography: Sol-gel open-tubular columns [Review]
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Advances in sol-gel based columns for capillary electrochromatography: Sol-gel open-tubular columns [Review]

机译:基于溶胶-凝胶的毛细管电色谱柱的进展:溶胶-凝胶开管色谱柱[综述]

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The development of sol-gel open-tubular column technology in capillary electrochromatography (CEC) is reviewed. Sol-gel column technology offers a versatile means of creating organic-inorganic hybrid stationary phases. Sol-gel column technology provides a general approach to column fabrication for microseparation techniques including CEC, and is amenable to both open-tubular and monolithic columns. Direct chemical bonding of the stationary phase to the capillary inner walls provides enhanced thermal and solvent stability to sol-gel columns. Sol-gel stationary phases inherently possess higher surface area, and thus provide an effective one-step alternative to conventional open-tubular column technology. Sol-gel column technology is applicable to both silica-based and transition metal oxide-based hybrid stationary phases, and thus, provides a great opportunity to utilize advanced material properties of a wide range of nontraditional stationary phases to achieve enhanced selectivity in analytical microseparations. A wide variety of stationary phase ligands can be chemically immobilized on the capillary inner surface using a single-step sol-gel procedure. Sol-gel chemistry can be applied to design stationary phases with desired chromatographic characteristics, including the possibility of creating columns with either a positive or a negative charge on the stationary phase surface. This provides a new tool to control electroosmotic flow (EOF) in the column. Column efficiencies on the order of half a million theoretical plates per meter have been reported for sol-gel open-tubular CEC columns. The selectivity of sol-gel stationary phases can be easily fine-tuned by adjusting the composition of the coating sol solution. Open-tubular columns have significant advantages over their packed counterparts because of the simplicity in column making and hassle-free fritless operation. Open-tubular CEC columns possess low sample capacity and low detection sensitivity. Full utilization of the analytical potential of sol-gel open-tubular columns will require a concomitant development in the area of high-sensitivity detection technology. [References: 194]
机译:综述了溶胶凝胶开管柱技术在毛细管电色谱(CEC)中的发展。溶胶-凝胶色谱柱技术提供了创建有机-无机杂化固定相的通用方法。溶胶-凝胶色谱柱技术为包括CEC在内的微分离技术提供了通用的色谱柱制备方法,并且适用于开管和整体色谱柱。固定相与毛细管内壁的直接化学键合为溶胶-凝胶柱提供了增强的热稳定性和溶剂稳定性。溶胶-凝胶固定相固有地具有较高的表面积,因此可为常规的开管色谱柱技术提供有效的一步替代方法。溶胶-凝胶色谱柱技术适用于基于二氧化硅和过渡金属氧化物的混合固定相,因此,为利用广泛的非传统固定相的先进材料性能提供了巨大的机会,从而在分析微分离中实现了更高的选择性。多种固定相配体可通过一步溶胶-凝胶法化学固定在毛细管内表面上。溶胶-凝胶化学可用于设计具有所需色谱特性的固定相,包括在固定相表面上创建带正电荷或负电荷的色谱柱的可能性。这提供了控制柱中电渗流(EOF)的新工具。据报道,溶胶-凝胶开管CEC色谱柱的柱效为每米理论板数百万分之一。通过调节涂料溶胶溶液的组成,可以轻松地微调溶胶-凝胶固定相的选择性。开管式色谱柱比填充柱状色谱柱具有显着的优势,这是因为色谱柱的制造简单且操作简便。开管式CEC色谱柱具有低样品容量和低检测灵敏度。充分利用溶胶-凝胶开管式色谱柱的分析潜力将需要伴随着高灵敏度检测技术领域的发展。 [参考:194]

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