Hu Jiwei, Xie Chuanhui, Tian Ruijun, He Zhike, Zou Hanfa
College of Chemistry and Molecular Sciences, Wuhan University, Wuhan, China.
J Sep Sci. 2007 Apr;30(6):891-9. doi: 10.1002/jssc.200600173.
A novel monolithic silica column with zwitterionic stationary phase was prepared by in-situ covalent attachment of phenylalanine to a 3-glycidoxypropyltriethoxysilane-modified silica monolith. Due to the zwitterionic nature of the resulting stationary phase, the density and sign of the net surface charge, and accordingly the direction and magnitude of electroosmotic flow in this column during capillary electrochromatography could be manipulated by adjusting the pH values of the mobile phase. CEC separations of various acidic and basic compounds were performed on the prepared column in anodic and weakly cathodic EOF modes, respectively. The peak tailing of basic compounds in CEC on a silica column could be alleviated at optimized buffer compositions. Besides the electrophoretic mechanism and weak hydrophobic interaction, weak cation- and anion-exchange interactions are also involved in the separations of acids and bases, respectively, on the zwitterionic column.
通过将苯丙氨酸原位共价连接到3-缩水甘油氧基丙基三乙氧基硅烷改性的硅胶整体柱上,制备了一种具有两性离子固定相的新型整体硅胶柱。由于所得固定相的两性离子性质,通过调节流动相的pH值,可以控制净表面电荷的密度和符号,从而控制毛细管电色谱过程中该柱内电渗流的方向和大小。分别在阳极和弱阴极电渗流模式下,在制备的柱上对各种酸性和碱性化合物进行了毛细管电色谱分离。在优化的缓冲液组成下,硅胶柱上毛细管电色谱中碱性化合物的峰拖尾现象可以得到缓解。除了电泳机制和弱疏水相互作用外,两性离子柱上酸和碱的分离还分别涉及弱阳离子交换和阴离子交换相互作用。