Ponton Lisa M, Porter Marc D
Ames Laboratory-USDOE, Department of Chemistry, Iowa State University, Ames, IA 50011, USA.
Anal Chem. 2004 Oct 1;76(19):5823-8. doi: 10.1021/ac049257w.
The performance advantages of carrying out electrochemically modulated liquid chromatography (EMLC) at elevated temperatures and mobile-phase flow rates are investigated. EMLC has the unique ability to manipulate analyte retention and enhance separation efficiencies through changes in the potential applied to a conductive stationary phase. Operation of high-performance liquid chromatography systems at elevated column temperatures also provides pathways to improve chromatographic performance by enhancing analyte diffusivity and facilitating the use of higher mobile-phase flow rates than conventionally attainable. The results show that performing EMLC separations at elevated temperatures (e.g., 100 degrees C) reduces the analysis time of a mixture of aromatic sulfonates in a mixed mobile phase by more than a factor of 20. Moreover, use of higher operating temperatures enables the separation of this mixture with an entirely aqueous mobile phase in less than 2 min.
研究了在高温和流动相流速下进行电化学调制液相色谱(EMLC)的性能优势。EMLC具有独特的能力,可通过改变施加到导电固定相上的电位来控制分析物保留并提高分离效率。在升高的柱温下操作高效液相色谱系统,还通过增强分析物扩散率和便于使用比传统方法更高的流动相流速,为改善色谱性能提供了途径。结果表明,在高温(例如100℃)下进行EMLC分离可将混合流动相中芳族磺酸盐混合物的分析时间缩短20倍以上。此外,使用更高的操作温度能够在不到2分钟的时间内用完全水相流动相分离该混合物。