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离子对色谱中三丁胺和三乙胺离子对试剂吸附等温线的获取方法开发。

Method development for the acquisition of adsorption isotherm of ion pair reagents Tributylamine and Triethylamine in ion pair chromatography.

机构信息

Department of Engineering and Chemical Sciences, Karlstad University, Karlstad SE-651 88, Sweden.

Department of Engineering and Chemical Sciences, Karlstad University, Karlstad SE-651 88, Sweden.

出版信息

J Chromatogr A. 2023 Jan 4;1687:463687. doi: 10.1016/j.chroma.2022.463687. Epub 2022 Nov 28.

Abstract

Tributylamine (TBuA) and triethylamine (TEtA) are the most commonly used ion pair reagents in ion pair chromatography especially for the analysis of oligonucleotides. In order to improve the understanding of the retention and separation mechanism of oligonucleotides in ion pair chromatography, it is important to understand the retention mechanism and the nature of interaction of these ion pair reagents with the stationary phase in the chromatographic column. Adsorption isotherm is helpful in evaluating such interactions, and subsequently predicting the retention mechanism. Alkylamines are very polar molecules which lack suitable chromophore and are commonly present in charged forms. Therefore, their determination and the subsequent acquisition of their adsorption isotherms using traditional liquid chromatography is very difficult. In this study, we first developed an analytical method for the determination of TBuA and TEtA in a typical chromatographic mobile phase (acetonitrile-water) and then used the same method to acquire the adsorption isotherms for tributylammonium acetate (TBuAA) and triethylammonium acetate (TEtAA). This method started with the conversion of the alkylammonium ions to free neutral forms by treating the sample with a strong base, followed by pentane-mediated extraction and finally the analysis of the extracts using gas chromatography-flame ionization detector (GC-FID). This three-step method was validated for parameters like range, linearity, intra-day and inter-day precision and accuracy, limit of detection and limit of quantitation. For the adsorption isotherms, the C18 column was first equilibrated with the solutions having different concentrations of alkylammonium ions and then stripped with eluent devoid of alkylammonium ions. Several stripping eluents were investigated and it was discovered that the eluent requirement could be decreased by the addition of sodium chloride. The effluents from the stripping phase were collected and analyzed using the developed analytical method to acquire the adsorption data. Under the investigated conditions, adsorption of TBuAA and TEtAA showed type III and type I isotherm behavior respectively.

摘要

三丁胺(TBuA)和三乙胺(TEtA)是离子对色谱中最常用的离子对试剂,特别是用于分析寡核苷酸。为了提高对寡核苷酸在离子对色谱中保留和分离机制的理解,了解这些离子对试剂与色谱柱中固定相的保留机制和相互作用性质非常重要。吸附等温线有助于评估这种相互作用,并随后预测保留机制。烷基胺是非常极性的分子,缺乏合适的生色团,通常以带电形式存在。因此,用传统的液相色谱法很难测定它们并随后获取它们的吸附等温线。在这项研究中,我们首先开发了一种用于测定典型色谱流动相(乙腈-水)中 TBuA 和 TEtA 的分析方法,然后使用相同的方法获取三丁基乙酸铵(TBuAA)和三乙基乙酸铵(TEtAA)的吸附等温线。该方法首先通过用强碱处理样品将烷基铵离子转化为游离的中性形式,然后进行戊烷介导的萃取,最后使用气相色谱-火焰离子化检测器(GC-FID)分析提取物。该三步法对范围、线性、日内和日间精密度和准确度、检测限和定量限等参数进行了验证。对于吸附等温线,首先用不同浓度的烷基铵离子溶液平衡 C18 柱,然后用不含烷基铵离子的洗脱液进行洗脱。研究了几种洗脱剂,发现通过添加氯化钠可以减少洗脱剂的需求。从洗脱相收集流出物并使用开发的分析方法进行分析,以获取吸附数据。在所研究的条件下,TBuAA 和 TEtAA 的吸附分别表现出 III 型和 I 型等温线行为。

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