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超高效超临界流体色谱固定相的改进分类

An improved classification of stationary phases for ultra-high performance supercritical fluid chromatography.

作者信息

West Caroline, Lemasson Elise, Bertin Sophie, Hennig Philippe, Lesellier Eric

机构信息

Univ Orleans, CNRS, Institut de Chimie Organique et Analytique (ICOA), UMR 7311 B.P. 6759, rue de Chartres, F-45067 Orléans cedex 2, France.

Univ Orleans, CNRS, Institut de Chimie Organique et Analytique (ICOA), UMR 7311 B.P. 6759, rue de Chartres, F-45067 Orléans cedex 2, France.

出版信息

J Chromatogr A. 2016 Apr 1;1440:212-228. doi: 10.1016/j.chroma.2016.02.052. Epub 2016 Feb 19.

DOI:10.1016/j.chroma.2016.02.052
PMID:26920664
Abstract

Supercritical fluid chromatography (SFC) has recently benefited of new instrumentation, together with the availability of many ultra-high performance columns (sub -2μm fully porous particles or sub -3μm superficially porous particles), rendering it more attractive than ever. Most of these columns commonly used in SFC were initially developed for HPLC use, with an increasing number of stationary phases specifically designed for SFC. While the availability of different stationary phase chemistries is an advantage to achieve successful SFC separations, selecting a column for method development remains difficult. For this reason, we have previously developed a classification of stationary phases dedicated to SFC use. It is based on linear solvation energy relationships (LSER) with Abraham descriptors (for neutral species). While current interest in SFC is strong in the pharmaceutical industry, the need to take account of interactions occurring with ionisable species is pressing. We have previously shown how a modified version of the solvation parameter model, adapted to take account of ionic and ionizable species, could be applied to the characterization of SFC systems. In the present paper, based on this modified LSER model, and on the analysis of 109 neutral and ionisable species, we propose an improved classification of 31 ultra-high performance stationary phases to facilitate method development with SFC.

摘要

超临界流体色谱法(SFC)近来受益于新的仪器设备,同时有许多超高效色谱柱可供使用(粒径小于2μm的全多孔颗粒或粒径小于3μm的表面多孔颗粒),这使得它比以往任何时候都更具吸引力。SFC中常用的大多数此类色谱柱最初是为HPLC开发的,专门为SFC设计的固定相数量也在不断增加。虽然不同固定相化学性质的可用性是实现成功的SFC分离的一个优势,但为方法开发选择色谱柱仍然很困难。因此,我们之前已经开发了一种适用于SFC的固定相分类方法。它基于与亚伯拉罕描述符(用于中性物质)的线性溶剂化能关系(LSER)。虽然目前制药行业对SFC的兴趣浓厚,但考虑与可电离物质发生的相互作用的需求迫在眉睫。我们之前已经展示了如何将适用于考虑离子和可电离物质的溶剂化参数模型的修改版本应用于SFC系统的表征。在本文中,基于这个修改后的LSER模型,并通过对109种中性和可电离物质的分析,我们提出了对31种超高效固定相的改进分类,以促进SFC方法的开发。

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