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手性拆分(±)-麻黄碱的印迹聚合物:采用分子印迹手性固定相的填充柱超临界流体色谱法。

Imprinted polymers for chiral resolution of (±)-ephedrine, 4: packed column supercritical fluid chromatography using molecularly imprinted chiral stationary phases.

机构信息

School of Chemistry, University of Leeds, Leeds, UK.

出版信息

J Chromatogr A. 2012 Nov 16;1264:117-23. doi: 10.1016/j.chroma.2012.09.069. Epub 2012 Sep 26.

Abstract

(-)-Ephedrine-molecularly imprinted polymers (MIPs) have been successfully used as stationary phases in supercritical fluid chromatography for the separation of (±)-ephedrine enantiomers. This approach combines the simple preparation and predictable elution order of MIP stationary phases with the superior mobile phase diffusivity and low viscosity of supercritical fluid mobile phases. The optimised mobile phase comprised supercritical carbon dioxide with a modifier consisting of MeOH/isopropylamine/H(2)O 93:5:2 (v/v/v). In many cases, better resolution separations were observed compared to when liquid mobile phases were used, and better separations achieved at high sample loads, although interestingly the MIPs which work best in SFC are different from the MIPs that work best in HPLC with an amine modifier. The MIP stationary phases were stable under the conditions employed and the chromatography was reproducible. This work opens the door to exploiting MIP stationary phases in preparative SFC.

摘要

(-)-麻黄碱分子印迹聚合物(MIPs)已成功用作超临界流体色谱中的固定相,用于分离(±)-麻黄碱对映体。这种方法结合了 MIP 固定相的简单制备和可预测的洗脱顺序以及超临界流体流动相的优越的流动性和低粘度。优化的流动相由超临界二氧化碳和甲醇/异丙胺/水 93:5:2(v/v/v)的改性剂组成。在许多情况下,与使用液体流动相相比,观察到更好的分辨率分离,并且在高样品负载下实现了更好的分离,尽管有趣的是,在 SFC 中效果最好的 MIP 与在 HPLC 中使用胺改性剂时效果最好的 MIP 不同。MIP 固定相在使用的条件下稳定,色谱重复性好。这项工作为在制备性 SFC 中利用 MIP 固定相开辟了道路。

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