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Hybrid carbon nanoparticles modified core-shell silica: A high efficiency carbon-based phase for hydrophilic interaction liquid chromatography

机译:杂化碳纳米颗粒改性的核-壳二氧化硅:用于亲水相互作用液相色谱的高效碳基相

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摘要

Hydrophilic interaction liquid chromatography (HILIC) is a fast growing separation technique for hydrophilic and polar analytes. In this work, we combine the unique selectivity of carbon surfaces with the high efficiency of core-shell silica. First, 5 μm core-shell silica is electrostatically coated with 105 nm cationic latex bearing quaternary ammonium groups. Then 50 nm anionic carbon nanoparticles are anchored onto the surface of the latex coated core-shell silica particles to produce a hybrid carbon-silica phase. The hybrid phase shows different selectivity than ten previously classified HILIC column chemistries and 36 stationary phases. The hybrid HILIC phase has shape selectivity for positional isomeric pairs (phthalic/isophthalic and 1-naphthoic/2-naphthoic acids). Fast and high efficiency HILIC separations of biologically important carboxylates, phenols and pharmaceuticals are reported with efficiencies up to 85,000 plates m~(-1). Reduced plate height of 1.9 (95,000 plates m~(-1)) can be achieved. The hybrid phase is stable for at least 3 months of usage and storage under typical HILIC eluents.
机译:亲水相互作用液相色谱法(HILIC)是用于亲水和极性分析物的快速增长的分离技术。在这项工作中,我们将碳表面的独特选择性与核-壳二氧化硅的高效率结合在一起。首先,用105 nm带有季铵基团的阳离子胶乳对5μm核壳二氧化硅进行静电涂覆。然后将50 nm阴离子碳纳米颗粒锚固在乳胶涂覆的核-壳二氧化硅颗粒的表面上,以产生杂化碳-二氧化硅相。杂合相与十种先前分类的HILIC色谱柱化学和36种固定相相比具有不同的选择性。杂化HILIC相对位置异构对(邻苯二甲酸/间苯二甲酸和1-萘甲酸/ 2-萘甲酸)具有形状选择性。据报道,对重要的羧酸盐,酚和药物进行快速高效的HILIC分离具有高达85,000板m〜(-1)的效率。可以将板高降低到1.9(95,000板m〜(-1))。在典型的HILIC洗脱液下,混合相可稳定使用至少3个月。

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