Department of Analytical Chemistry, Faculty of Chemical Technology, University of Pardubice, Studentská 573, CZ 53210 Pardubice, Czech Republic.
J Chromatogr A. 2012 Mar 9;1228:125-34. doi: 10.1016/j.chroma.2011.06.077. Epub 2011 Jun 30.
The effects of mobile phase composition and of temperature on the retention behavior of phenolic acids were studied on 4 hydrosilated (type C silica) based columns in buffered aqueous acetonitrile, both in the aqueous normal phase (HILIC) and in the reversed-phase mobile phase range. The UDC cholesterol and the C₁₈ bidentate columns show significant reversed phase and normal-phase retention mechanisms, whereas very weak retention in the reversed-phase mode was observed on the silica hydride and the Diamond hydride columns. The concentration effects of the aqueous acetate buffer over the full mobile phase (HILIC and RP) composition range can be described by a simple four-parameter equation. At increasing temperature, the retention times and peak widths decrease both in the aqueous normal phase and in the reversed phase mobile phase range. Linear van't Hoff log k versus 1/T plots were observed, indicating a single retention mechanism predominating in the highly organic (HILIC), like in highly aqueous (RP) mobile phase ranges. Besides the type of the stationary phase, the separation selectivity of phenolic acids strongly depends on temperature and on the mobile phase composition. From among the 4 hydrosilated columns compared in this work, the UDC cholesterol column has high temperature stability (up to 100 °C) and is most suitable for selective and efficient separations of phenolic acids both in the HILIC and in the RP modes.
研究了在缓冲水-乙腈中,流动相组成和温度对酚酸保留行为的影响,分别在水相正相(HILIC)和反相流动相范围内,在 4 种基于全氢硅烷化(类型 C 硅胶)的色谱柱上进行。UDC 胆固醇和 C₁₈ 双齿柱显示出显著的反相和正相保留机制,而在硅胶氢化物和 Diamond 氢化物柱上观察到非常弱的反相保留模式。在全流动相(HILIC 和 RP)组成范围内,水相乙酸盐缓冲液的浓度效应可以用一个简单的四参数方程来描述。随着温度的升高,在水相正相和反相流动相范围内,保留时间和峰宽都减小。观察到线性 van't Hoff log k 与 1/T 的关系图,表明在高有机相(HILIC)和高水相(RP)流动相范围内,存在单一的主导保留机制。除了固定相的类型外,酚酸的分离选择性还强烈依赖于温度和流动相组成。在本工作中比较的 4 种全氢硅烷化柱中,UDC 胆固醇柱具有较高的温度稳定性(高达 100°C),非常适合在 HILIC 和 RP 模式下对酚酸进行选择性和高效分离。