Department of Chemistry, Adam Mickiewicz University, ul. Grunwaldzka 6, 60-780 Poznan, Poland.
J Chromatogr A. 2011 Mar 18;1218(11):1452-60. doi: 10.1016/j.chroma.2011.01.031. Epub 2011 Jan 18.
Immobilization strategy based on Huisgen 1,3-dipolar cycloaddition (click chemistry) of 10,11-didehydrocinchona tert-butylcarbamates to azido-grafted silica gels has been evaluated for preparation of novel chiral stationary phases (CSP 1-3). The resultant 1,2,3-triazole-linked CSPs were tested under various mobile phase conditions (polar organic and reversed phase mode) with a representative set of structurally diverse racemic acids including N-protected aminoacids, aromatic and aryloxycarboxylic acids as well as binaphthol phosphate. The chiral recognition performance of the C3-triazole-linked CSPs was found to mirror largely that of the known C3-thioether-linked CSP in terms of elution order, enantioselectivity and retention behavior. In an effort to assess the non-specific binding expressed as retention increment of these triazole-linked CSPs, the parent azidopropyl- and triazole-modified silica materials (thus not containing the chiral head ligand) were studied independently. Compared with the corresponding CSPs, the analyte retention on the azidopropyl control column was very low, and practically negligible on the corresponding triazole-modified reference column. Only minor losses in analyte retention behavior (<5%) were observed with triazole-linked CSPs after two month of continuous use with polar-organic and reversed-phase-type mobile phases, highlighting the excellent stability of the 1,2,3-triazole linker.
基于 10,11-二脱氢奎宁叔丁基碳酰胺与接枝有叠氮基的硅胶的 Huisgen 1,3-偶极环加成(点击化学)的固定化策略已被评估用于制备新型手性固定相(CSP 1-3)。在各种流动相条件(极性有机和反相模式)下测试了得到的 1,2,3-三唑键合的 CSP,使用一组具有代表性的结构多样的外消旋酸,包括 N-保护的氨基酸、芳香族和芳氧基羧酸以及联萘酚磷酸酯。发现 C3-三唑键合 CSP 的手性识别性能在洗脱顺序、对映选择性和保留行为方面与已知的 C3-硫醚键合 CSP 非常相似。为了评估这些三唑键合 CSP 表达的非特异性结合,即保留增量,我们独立研究了母体叠氮丙基和三唑修饰的硅胶材料(因此不含手性头配体)。与相应的 CSP 相比,在相应的三唑修饰的对照柱上,分析物在叠氮丙基对照柱上的保留非常低,实际上可以忽略不计。在使用极性有机和反相型流动相连续两个月后,用三唑键合 CSP 观察到分析物保留行为的仅略有损失(<5%),突出了 1,2,3-三唑键的优异稳定性。