He Hai-Bo, Feng Yu-Qi, Da Shi-Lu, Hu Zhi-Xiong, Qu Li
Department of Chemistry, Wuhan University, Wuhan, PR China.
J Sep Sci. 2005 Aug;28(13):1577-86. doi: 10.1002/jssc.200500042.
The high-performance liquid chromatographic behavior of some basic drugs was studied on a n-octadecylphosphonic acid modified magnesia-zirconia (C18PZM) stationary phase. The effect of mobile phase variables such as methanol content, ionic strength, and pH on their chromatographic behavior was investigated. The retention mechanism of basic drugs on the stationary phase was elucidated. The results indicate that both hydrophobic and cation-exchange interactions contribute to solute retention under most chromatographic conditions. The inherent Brönsted-acid sites and also the adsorbed Lewis base anionic buffer constituents on accessible ZM surface Lewis acid sites play a role in the retention of ionized solutes by cation-exchange interaction. However, especially at high mobile phase pH, the retention of basic drugs depends mainly on hydrophobic interactions between solutes and support. Separations of the basic drugs on the C18PZM phase by a predominantly reversed-phase retention mode were very promising. The mixed-mode retention feature on this phase, as a result of the adsorbed Lewis base anionic buffer constituents acting as sites for cation-exchange, could also be very useful, e.g. for enhancing the chromatographic selectivity of such analytes. The C18PZM seems to be an excellent alternative to silica-based reversed-phase stationary phase for the separation of strongly basic solutes.
研究了一些碱性药物在正十八烷基膦酸改性的氧化镁-氧化锆(C18PZM)固定相上的高效液相色谱行为。考察了流动相变量如甲醇含量、离子强度和pH对其色谱行为的影响。阐明了碱性药物在固定相上的保留机理。结果表明,在大多数色谱条件下,疏水作用和阳离子交换作用均对溶质保留有贡献。固有的布朗斯特酸位点以及可及的ZM表面路易斯酸位点上吸附的路易斯碱阴离子缓冲成分通过阳离子交换作用在离子化溶质的保留中发挥作用。然而,特别是在高流动相pH下,碱性药物的保留主要取决于溶质与载体之间的疏水作用。通过主要的反相保留模式在C18PZM相上分离碱性药物非常有前景。由于吸附的路易斯碱阴离子缓冲成分充当阳离子交换位点,该相上的混合模式保留特性也可能非常有用,例如用于提高此类分析物的色谱选择性。对于强碱性溶质的分离,C18PZM似乎是基于硅胶的反相固定相的极佳替代品。