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胶束液相色谱中脂肪族羧酸和醇类作为效率和洗脱强度增强剂。

Aliphatic carboxylic acids and alcohols as efficiency and elution strength enhancers in micellar liquid chromatography.

机构信息

Department of Chemical Metrology, V.N. Karazin Kharkov National University, Ukraine.

出版信息

J Chromatogr A. 2010 Sep 3;1217(36):5665-73. doi: 10.1016/j.chroma.2010.07.001. Epub 2010 Jul 31.

Abstract

Micellar liquid chromatography (MLC) uses surfactant solutions as mobile phases with added organic additives to enhance both the elution strength and the chromatographic efficiency. Two aliphatic carboxylic acids (1-butanoic and 1-pentanoic) were used as MLC additives and compared with the two corresponding alcohols (1-butanol, 1-pentanol) in terms of elution strength, efficiency and selectivity. A set of 11 phenol derivatives was used as probe compounds. All micellar mobile phases were prepared with sodium dodecylsulfate (SDS) with concentration ranging from 0.05 to 0.15M and the modifier content within 1.0 and 5.0% (v/v). The elution strength of different mobile phases containing a constant amount of SDS and different amounts of modifiers; and mobile phases containing a constant amount of modifier and different SDS concentration were determined and discussed. The effect of the acid modifiers on efficiency was studied constructing van Deemter plots that showed no minimum within the 0.01-0.7mL/min flow rate range studied. Temperature effects were also studied constructing the classical van't Hoff plots. The slight curvature of the plots in the 25-70 degrees C range may indicate some modification of the surfactant-bonded moiety layer on the stationary phase surface. Since no definitive advantage of the use of aliphatic acids were established compared to their alcohol counterpart, their terrible smell will probably preclude their use as MLC organic modifiers.

摘要

胶束液相色谱(MLC)使用表面活性剂溶液作为流动相,并添加有机溶剂添加剂以增强洗脱强度和色谱效率。两种脂肪族羧酸(1-丁酸和 1-戊酸)被用作 MLC 添加剂,并与两种相应的醇(1-丁醇,1-戊醇)在洗脱强度、效率和选择性方面进行了比较。一组 11 种苯酚衍生物被用作探针化合物。所有胶束流动相均由十二烷基硫酸钠(SDS)制备,浓度范围为 0.05 至 0.15M,改性剂含量为 1.0%至 5.0%(v/v)。确定并讨论了含有一定量 SDS 和不同量改性剂的不同流动相的洗脱强度;以及含有一定量改性剂和不同 SDS 浓度的流动相的洗脱强度。通过构建 van Deemter 图谱研究了酸改性剂对效率的影响,结果表明在研究的 0.01-0.7mL/min 流速范围内没有出现最小值。还研究了温度效应,构建了经典的 van't Hoff 图谱。在 25-70°C 范围内,图谱的轻微曲率可能表明固定相表面上的表面活性剂键合部分层发生了一些修饰。由于与醇相比,脂肪族酸的使用没有明显的优势,因此它们难闻的气味可能会阻止它们作为 MLC 有机溶剂添加剂的使用。

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