Department of Analytical Chemistry, Faculty of Chemical Technology, University of Pardubice, Studentská 573, CZ-53210 Pardubice, Czech Republic.
J Chromatogr A. 2010 Jan 1;1217(1):22-33. doi: 10.1016/j.chroma.2009.09.041. Epub 2009 Sep 23.
We prepared hybrid particle-monolithic polymethacrylate columns for micro-HPLC by in situ polymerization in fused silica capillaries pre-packed with 3-5microm C(18) and aminopropyl silica bonded particles, using polymerization mixtures based on laurylmethacrylate-ethylene dimethacrylate (co)polymers for the reversed-phase (RP) mode and [2-(methacryloyloxy)ethyl]-dimethyl-(3-sulfopropyl) zwitterionic (co)polymers for the hydrophilic interaction (HILIC) mode. The hybrid particle-monolithic columns showed reduced porosity and hold-up volumes, approximately 2-2.5 times lower in comparison to the pure monolithic columns prepared in the whole volume of empty capillaries. The elution volumes of sample compounds are also generally lower in comparison to packed or pure monolithic columns. The efficiency and permeability of the hybrid columns are intermediate in between the properties of the reference pure monolithic and particle-packed columns. The chemistries of the embedded solid particles and of the interparticle monolithic moiety in the hybrid capillary columns contribute to the retention to various degrees, affecting the selectivity of separation. Some hybrid columns provided improved separations of proteins in comparison to the reference particle-packed columns in the reversed-phase mode. Zwitterionic hybrid particle-monolithic columns show dual mode retention HILIC/RP behaviour depending on the composition of the mobile phase and allow separations of polar compounds such as phenolic acids in the HILIC mode at lower concentrations of acetonitrile and, often in shorter analysis time in comparison to particle-packed and full-volume monolithic columns.
我们通过在预先填充有 3-5μm C(18)和氨丙基硅胶键合颗粒的熔融石英毛细管中进行原位聚合,制备了用于微 HPLC 的混合颗粒-整体型聚甲基丙烯酸酯柱,聚合混合物基于月桂基甲基丙烯酸酯-亚乙基二甲基丙烯酸酯(共)聚合物用于反相(RP)模式和[2-(甲基丙烯酰氧基)乙基]-二甲基-(3-磺丙基)两性离子(共)聚合物用于亲水相互作用(HILIC)模式。与在整个空毛细管体积中制备的纯整体柱相比,混合颗粒-整体柱的孔度和保留体积减小,约低 2-2.5 倍。与填充柱或纯整体柱相比,样品化合物的洗脱体积也通常较低。混合柱的效率和渗透性在参考纯整体柱和颗粒填充柱的性能之间处于中间位置。嵌入固体颗粒和混合毛细管柱中颗粒间整体部分的化学性质在不同程度上有助于保留,从而影响分离的选择性。与参考颗粒填充柱相比,一些混合柱在反相模式下提供了改进的蛋白质分离。两性离子混合颗粒-整体柱表现出双重保留模式 HILIC/RP 行为,这取决于流动相的组成,并允许在较低浓度的乙腈下以 HILIC 模式分离极性化合物,如酚酸,与颗粒填充柱和全体积整体柱相比,通常在更短的分析时间内。