Song Huiying, Adams Erwin, Desmet Gert, Cabooter Deirdre
KU Leuven, Department for Pharmaceutical and Pharmacological Sciences, Pharmaceutical Analysis, Herestraat 49, Leuven, Belgium.
Vrije Universiteit Brussel, Department of Chemical Engineering, Pleinlaan 2, 1050 Brussel, Belgium.
J Chromatogr A. 2014 Nov 21;1369:83-91. doi: 10.1016/j.chroma.2014.10.002. Epub 2014 Oct 13.
An intrinsic performance comparison is made of the reduction in analysis time that can be obtained when switching from HPLC to UHPLC column formats in HILIC and reversed-phase conditions. A detailed overview of the packing characteristics of both stationary phase types is given first. It is demonstrated that HILIC columns demonstrate higher external porosity values than their reversed-phase counterparts resulting in lower flow resistance values. Column total porosity values determined from the elution time of a small marker molecule are shown to depend strongly on the composition of the mobile phase. To omit errors that might arise from an over- or underestimation of the column void time, all plate height and kinetic plot data are therefore expressed as a function of the interstitial velocity. Although only a limited number of columns are evaluated in this study, it is shown that the column efficiency of the HILIC columns is lower than that of their reversed-phase counterparts, at least for the compounds evaluated here. Despite this lower efficiency, the kinetic performance of both stationary phase types is similar, due to the much lower viscosity of the mobile phases typically used in HILIC conditions. Finally, it is demonstrated that a similar, yet slightly larger reduction in analysis time can be obtained when switching from HPLC column formats to UHPLC formats in HILIC compared to reversed-phase conditions.
对在亲水作用色谱(HILIC)和反相条件下从高效液相色谱(HPLC)柱型切换到超高效液相色谱(UHPLC)柱型时可实现的分析时间减少进行了内在性能比较。首先给出了两种固定相类型的填充特性详细概述。结果表明,HILIC柱的外部孔隙率值高于其反相对应物,导致流动阻力值更低。由小标记分子的洗脱时间确定的柱总孔隙率值强烈依赖于流动相的组成。为了避免因柱死时间估计过高或过低而可能产生的误差,因此所有板高和动力学曲线数据均表示为填隙速度的函数。尽管本研究中仅评估了有限数量的柱子,但结果表明,至少对于此处评估的化合物,HILIC柱的柱效低于其反相对应物。尽管效率较低,但由于HILIC条件下通常使用的流动相粘度低得多,两种固定相类型的动力学性能相似。最后,结果表明,与反相条件相比,在HILIC中从HPLC柱型切换到UHPLC柱型时,可获得类似但略大的分析时间减少。