Jiang Zhengjin, Smith Norman W, Ferguson Paul D, Taylor Mark R
Novartis Institutes for Biomedical Research, Global Discovery Chemistry, Horsham, UK.
J Sep Sci. 2009 Aug;32(15-16):2544-55. doi: 10.1002/jssc.200900130.
A novel zwitterionic hydrophilic porous poly(SPV-co-MBA) monolithic column was prepared by thermal co-polymerisation of 1-(3-sulphopropyl)-4-vinylpyridinium-betaine (4-SPV) and N,N'-methylenebisacrylamide (MBA). An HILIC/RP dual separation mechanism was observed on this optimised poly(SPV-co-MBA) monolithic column and the composition of the mobile phase corresponding to the transition from the HILIC to the RP mode was around 30% ACN in water. Higher hydrophilicity was achieved on this novel monolithic column compared to the poly(N,N-dimethyl-N-methacryloxyethyl-N-(3-sulphopropyl)ammonium betaine-co-ethylene dimethacrylate) monolithic column. Permeability studies showed slight swelling and/or shrinking with mobile phases of different polarity. As might be anticipated, a weak electrostatic interaction for charged analytes was also observed by studying the influence of mobile phase pH and salt concentration on their retention on the poly(SPV-co-MBA) monolithic column. The final optimised poly(SPV-co-MBA) monolith showed comparable selectivities to commercial ZIC-pHILIC phases for polar test analytes. Fast separation of five pyrimidines and purines was achieved in less than 1 min due to the high permeability of the monolithic column. Additionally, baseline separation of nine benzoic acid derivatives was also observed using either a pH or ACN gradient.
通过1-(3-磺丙基)-4-乙烯基吡啶鎓甜菜碱(4-SPV)和N,N'-亚甲基双丙烯酰胺(MBA)的热共聚制备了一种新型两性离子亲水性多孔聚(SPV-co-MBA)整体柱。在这种优化的聚(SPV-co-MBA)整体柱上观察到亲水作用色谱/反相双重分离机制,且从亲水作用色谱模式转变为反相模式时流动相的组成约为水相中30%的乙腈。与聚(N,N-二甲基-N-甲基丙烯酰氧基乙基-N-(3-磺丙基)铵甜菜碱-co-乙二醇二甲基丙烯酸酯)整体柱相比,这种新型整体柱具有更高的亲水性。渗透性研究表明,不同极性的流动相会导致轻微的溶胀和/或收缩。正如预期的那样,通过研究流动相pH值和盐浓度对带电分析物在聚(SPV-co-MBA)整体柱上保留的影响,还观察到了带电分析物之间微弱的静电相互作用。最终优化的聚(SPV-co-MBA)整体柱对极性测试分析物的选择性与市售ZIC-pHILIC固定相相当。由于整体柱的高渗透性,在不到1分钟的时间内实现了5种嘧啶和嘌呤的快速分离。此外,使用pH梯度或乙腈梯度时,还观察到9种苯甲酸衍生物的基线分离。