Department of Analytical Chemistry, University of Pardubice, Studentská 573, 53210 Pardubice, Czech Republic.
J Chromatogr A. 2010 Dec 17;1217(51):7981-9. doi: 10.1016/j.chroma.2010.07.061. Epub 2010 Aug 3.
Strongly polar phenolic acids are weakly retained and often poorly separated in reversed-phase (RP) liquid chromatography. We prepared zwitterionic polymethacrylate monolithic columns for micro-HPLC by in situ co-polymerization in fused-silica capillaries. The capillary monolithic columns prepared under optimized polymerization conditions show some similarities with the conventional particulate commercial ZIC-HILIC silica-based columns, however have higher retention and better separation selectivity under reversed-phase conditions, so that they can be employed for dual-mode HILIC-RP separations of phenolic acids on a single column. The capillary polymethacrylate monolithic sulfobetaine columns show excellent thermal stability and improved performance at temperatures 60-80°C. The effects of the operation conditions on separation were investigated, including the type and the concentration of the organic solvent in the aqueous-organic mobile phase (acetonitrile and methanol), the ionic strength of the acetate buffer and temperature. While the retention in the RP mode decreases at higher temperatures in mobile phases with relatively low concentrations of acetonitrile, it is almost independent of temperature at HILIC conditions in highly organic mobile phases. The best separation efficiency can be achieved using relatively high acetate buffer ionic strength (20-30 mmol L(-1)) and gradient elution with alternately increasing (HILIC mode) and decreasing (RP mode) concentration of aqueous buffer in aqueous acetonitrile. Applications of the monolithic sulfobetaine capillary columns in alternating HILIC-RP modes are demonstrated on the analysis of phenolic acids in a beer sample.
强极性酚酸在反相(RP)液相色谱中保留较弱,通常分离效果较差。我们通过在熔融石英毛细管内原位共聚制备了两性聚甲基丙烯酸酯整体柱用于微 HPLC。在优化聚合条件下制备的毛细管整体柱与常规的 ZIC-HILIC 基于硅胶的商业颗粒柱具有一些相似之处,但在反相条件下具有更高的保留和更好的分离选择性,因此可以用于在单个柱子上对酚酸进行双模式 HILIC-RP 分离。毛细管聚甲基丙烯酸酯两性离子整体柱磺丁基柱在 60-80°C 时具有出色的热稳定性和改进的性能。研究了操作条件对分离的影响,包括水相-有机相(乙腈和甲醇)中有机溶剂的类型和浓度、乙酸盐缓冲液的离子强度和温度。虽然在相对低浓度乙腈的流动相中,在较高温度下 RP 模式的保留会降低,但在高有机流动相中的 HILIC 条件下,它几乎与温度无关。可以使用相对较高的乙酸盐缓冲液离子强度(20-30 mmol L(-1)) 并在水相中的乙腈中交替增加(HILIC 模式)和减少(RP 模式)水相缓冲液浓度进行梯度洗脱,以获得最佳的分离效率。在交替 HILIC-RP 模式下,整体柱磺丁基毛细管柱在啤酒样品中酚酸的分析中的应用得到了证明。