Zimmermann Aleksandra, Horak Jeannie, Sánchez-Muñoz Orlando L, Lämmerhofer Michael
Institute of Pharmaceutical Sciences, Pharmaceutical (Bio)Analysis, University of Tübingen, Auf der Morgenstelle 8, 72076 Tübingen, Germany.
Biomembranes Group, Institute of Molecular Science, Universitat de València, C/ Catedrático José Beltrán 2, 46980 Paterna, Valencia, Spain.
J Chromatogr A. 2015 Aug 28;1409:189-200. doi: 10.1016/j.chroma.2015.07.036. Epub 2015 Jul 14.
A series of new mixed-mode reversed-phase/weak anion-exchange (RP/WAX) phases have been synthesized by immobilization of N-undecenyl-3-α-aminotropane onto thiol-modified silica gel by thiol-ene click chemistry and subsequent introduction of acidic thiol-endcapping functionalities of different type and surface densities. Click chemistry allowed to adjust a controlled surface concentration of the RP/WAX ligand in such a way that a sufficient quantity of residual thiols remained unmodified which have been capped by thiol click with either 3-butenoic acid or allylsulfonic acid as co-ligands. In another embodiment, performic acid oxidation of N-undecenyl-3-α-aminotropane-derivatized thiol-modified silica gave a RP/WAX phase with high density of sulfonic acid end-capping groups. ζ-Potential determinations confirmed the fine-tuned pI of these mixed-mode stationary phases which was shifted from 9.5 to 8.2, 7.8, and 6.5 with 3-butenoic acid and allylsulfonic acid end-capping as well as performic acid oxidation. For acidic solutes, the co-ionic endcapping leads to strongly reduced retention times and clearly allowed elution of these analytes under lower ionic strength thus milder elution conditions. In spite of the acidic endcapping, the new mixed-mode phases maintained their hydrophobic and anion-exchange selectivity as well as their multimodal nature featuring RP and HILIC elution domains at acetonitrile percentages below and above 50%, respectively. Column classification by principal component analysis of an extended retention map in comparison to a set of polar commercial and in-house synthesized stationary phases confirmed complementarity of the new mixed-mode phases with respect to HILIC, polar RP, amino and commercial mixed-mode phases.
通过硫醇-烯点击化学将N-十一碳烯基-3-α-氨基托烷固定在硫醇修饰的硅胶上,并随后引入不同类型和表面密度的酸性硫醇封端官能团,合成了一系列新型的混合模式反相/弱阴离子交换(RP/WAX)固定相。点击化学使得能够以这样一种方式调节RP/WAX配体的可控表面浓度,即保留足够数量未修饰的残余硫醇,这些硫醇通过与3-丁烯酸或烯丙基磺酸作为共配体进行硫醇点击反应而被封端。在另一个实施方案中,对N-十一碳烯基-3-α-氨基托烷衍生化的硫醇修饰硅胶进行过甲酸氧化,得到具有高密度磺酸封端基团的RP/WAX固定相。ζ电位测定证实了这些混合模式固定相的精细调节的pI,通过3-丁烯酸和烯丙基磺酸封端以及过甲酸氧化,其从9.5分别移至8.2、7.8和6.5。对于酸性溶质,共离子封端导致保留时间大幅缩短,并明显允许在较低离子强度下洗脱这些分析物,从而实现更温和的洗脱条件。尽管进行了酸性封端,新型混合模式固定相仍保持其疏水和阴离子交换选择性以及其多峰性质,分别在乙腈百分比低于和高于50%时具有RP和HILIC洗脱区域。与一组极性商业和内部合成的固定相相比,通过扩展保留图的主成分分析进行柱分类,证实了新型混合模式固定相相对于HILIC、极性RP、氨基和商业混合模式固定相的互补性。