Hoffmann Christian V, Reischl Roland, Maier Norbert M, Lämmerhofer Michael, Lindner Wolfgang
University of Vienna, Christian Doppler Laboratory for Molecular Recognition Materials, Department of Analytical Chemistry & Food Chemistry, Währinger Strasse 38, A-1090 Vienna, Austria.
J Chromatogr A. 2009 Feb 13;1216(7):1157-66. doi: 10.1016/j.chroma.2008.12.044. Epub 2008 Dec 25.
Novel chiral stationary phases (CSPs) based on zwitterionic Cinchona alkaloid-type low-molecular mass chiral selectors (SOs), as they have been reported recently, were investigated in HPLC towards effects on their chromatographic behavior by mobile phase composition. Mobile phase characteristics like acid-to-base ratio and type of acidic and basic additives as well as effect of type of bulk solvents in nonaqueous polar organic and aqueous reversed-phase (RP) eluent systems were varied in order to illustrate the variability and applicability of zwitterionic CSPs with regard to mobile phase aspects. Chiral SOs of the five zwitterionic CSPs investigated herein contained weak and strong cation-exchange (WCX, SCX) sites at C9- and C6'-positions of the Cinchona alkaloid scaffold which itself accommodated the weak anion-exchange (WAX) site. The study focused on zwitterion-exchange (ZX) operational mode and chiral amino acids as target analytes. Besides, also the anion-exchange (AX) mode for chiral N-blocked amino acid analytes was considered, because of the intramolecular counterion (IMCI) property available in AX mode. Overall, most general and successful conditions in ZX mode were found to be weakly acidic methanolic mobile phases. In aqueous eluents RP contributions to retention came into play but only at low organic modifier content because of the highly polar character of zwitterionic analytes. At higher acetonitrile content, HILIC-related retention phenomena were observed. When using weakly basic eluent system in AX mode remarkably fast enantiomer separations involving exclusion phenomena were possible with one enantiomer eluting before and the other after void volume.
基于两性离子金鸡纳生物碱型低分子量手性选择剂(SOs)的新型手性固定相(CSPs),正如最近所报道的,在高效液相色谱(HPLC)中研究了流动相组成对其色谱行为的影响。改变流动相特性,如酸碱比、酸性和碱性添加剂的类型以及非水极性有机和水相反相(RP)洗脱液体系中主体溶剂类型的影响,以说明两性离子CSPs在流动相方面的变异性和适用性。本文研究的五种两性离子CSPs的手性SOs在金鸡纳生物碱骨架的C9和C6'位置含有弱和强阳离子交换(WCX、SCX)位点,其本身容纳弱阴离子交换(WAX)位点。该研究集中在两性离子交换(ZX)操作模式和手性氨基酸作为目标分析物。此外,由于AX模式中存在分子内抗衡离子(IMCI)特性,还考虑了手性N-保护氨基酸分析物的阴离子交换(AX)模式。总体而言,发现ZX模式中最普遍且成功的条件是弱酸性甲醇流动相。在水性洗脱液中,由于两性离子分析物的高极性,RP对保留的贡献仅在低有机改性剂含量时起作用。在较高的乙腈含量下,观察到与亲水作用色谱(HILIC)相关的保留现象。当在AX模式下使用弱碱性洗脱液体系时,涉及排除现象的对映体分离非常快,一种对映体在死体积之前洗脱,另一种在死体积之后洗脱。