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几种C18固定相的阴离子保留和阳离子排斥效应研究。

Investigation of anion retention and cation exclusion effects for several C18 stationary phases.

作者信息

Loeser Eric, Drumm Patrick

机构信息

Chemical and Analytical Development, Novartis Pharmaceuticals, East Hanover, New Jersey 07936, USA.

出版信息

Anal Chem. 2007 Jul 15;79(14):5382-91. doi: 10.1021/ac0704816. Epub 2007 May 27.

Abstract

When mobile-phase salt content is increased, cationic analytes often show increased retention. This effect is generally attributed to chaotropic or ion pairing effects. However, a cation exclusion mechanism could explain the same effects. In this study, experimental conditions were manipulated to enhance cation exclusion effects and reduce chaotropic/ion pairing effects by using (1) low ionic strength mobile phases to reduce electrostatic screening, (2) a buffer anion (dihydrogen phosphate) that exhibits minimal chaotropic/ion pairing effects, and (3) columns that show evidence of a weak positive charge. Urea was used as neutral void marker and glycinamide (in protonated form) as cationic void marker. It was assumed the difference in retention volumes between void markers would reflect an "excluded volume", inaccessible to cationic analytes. As ionic strength was lowered, it appeared as much as 80% of the pore volume became inaccessible to the glycinamide cation at the lowest ionic strength tested (1.4 mM). Three model cationic analytes showed retention loss approximately proportional to the excluded volume as ionic strength was decreased. This suggests that, under certain conditions, cation exclusion may become the dominant mechanism in mediating the retention of cationic analytes as the mobile-phase salt content is varied.

摘要

当流动相中的盐含量增加时,阳离子分析物的保留时间通常会延长。这种效应一般归因于离液效应或离子对效应。然而,阳离子排斥机制也可以解释相同的效应。在本研究中,通过以下方式操控实验条件来增强阳离子排斥效应并降低离液/离子对效应:(1)使用低离子强度流动相以减少静电屏蔽;(2)使用离液/离子对效应最小的缓冲阴离子(磷酸二氢根);(3)使用显示出弱正电荷迹象的色谱柱。尿素用作中性空体积标记物,甘氨酰胺(质子化形式)用作阳离子空体积标记物。假定空体积标记物之间保留体积的差异将反映阳离子分析物无法进入的“排阻体积”。随着离子强度降低,在所测试的最低离子强度(1.4 mM)下,甘氨酰胺阳离子似乎无法进入高达80%的孔体积。随着离子强度降低,三种模型阳离子分析物的保留时间损失与排阻体积大致成比例。这表明,在某些条件下,随着流动相盐含量的变化,阳离子排斥可能成为介导阳离子分析物保留的主要机制。

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