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高效液相色谱中可电离化合物的保留 十七. 流动相甲醇比例变化时水性缓冲液pH值变化的估算

Retention of ionisable compounds on high-performance liquid chromatography XVII. Estimation of the pH variation of aqueous buffers with the change of the methanol fraction of the mobile phase.

作者信息

Subirats Xavier, Bosch Elisabeth, Rosés Martí

机构信息

Departament de Química Analítica, Universitat de Barcelona, Martí i Franquès 1-11, E-08028 Barcelona, Spain.

出版信息

J Chromatogr A. 2007 Jan 5;1138(1-2):203-15. doi: 10.1016/j.chroma.2006.10.087. Epub 2006 Nov 21.

Abstract

The use of methanol-aqueous buffer mobile phases in HPLC is a common election when performing chromatographic separations of ionisable analytes. The addition of methanol to the aqueous buffer to prepare such a mobile phase changes the buffer capacity and the pH of the solution. In the present work, the variation of these buffer properties is studied for acetic acid-acetate, phosphoric acid-dihydrogenphosphate-hydrogenphosphate, citric acid-dihydrogencitrate-hydrogencitrate-citrate, and ammonium-ammonia buffers. It is well established that the pH change of the buffers depends on the initial concentration and aqueous pH of the buffer, on the percentage of methanol added, and on the particular buffer used. The proposed equations allow the pH estimation of methanol-water buffered mobile phases up to 80% in volume of organic modifier from initial aqueous buffer pH and buffer concentration (before adding methanol) between 0.001 and 0.01 mol L(-1). From both the estimated pH values of the mobile phase and the estimated pKa of the ionisable analytes, it is possible to predict the degree of ionisation of the analytes and therefore, the interpretation of acid-base analytes behaviour in a particular methanol-water buffered mobile phase.

摘要

在高效液相色谱法(HPLC)中,当对可电离分析物进行色谱分离时,使用甲醇 - 水缓冲流动相是一种常见选择。向水性缓冲液中添加甲醇以制备此类流动相会改变缓冲容量和溶液的pH值。在本研究中,针对乙酸 - 乙酸盐、磷酸 - 磷酸二氢盐 - 磷酸氢盐、柠檬酸 - 柠檬酸二氢盐 - 柠檬酸氢盐 - 柠檬酸盐以及铵 - 氨缓冲液,研究了这些缓冲特性的变化。众所周知,缓冲液的pH变化取决于缓冲液的初始浓度和水性pH值、添加甲醇的百分比以及所使用的特定缓冲液。所提出的方程能够根据初始水性缓冲液pH值和缓冲液浓度(添加甲醇之前)在0.001至0.01 mol L⁻¹之间,估算有机改性剂体积高达80%的甲醇 - 水缓冲流动相的pH值。根据流动相的估算pH值和可电离分析物的估算pKa值,能够预测分析物的电离程度,进而解释酸碱分析物在特定甲醇 - 水缓冲流动相中的行为。

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