Department of Analytical and Environmental Chemistry, Vilnius University, Naugarduko 24, LT-03225 Vilnius, Lithuania.
J Chromatogr A. 2011 Sep 28;1218(39):6884-91. doi: 10.1016/j.chroma.2011.08.034. Epub 2011 Aug 17.
The potential of 1.7 μm ethylene bridged hybrid silica phase was investigated for the separation of twelve imidazolium-based ionic liquid cations. U-shaped retention profile was observed for all solutes with an increase in retention at both low and high acetonitrile content. Chromatographic behaviour of imidazolium cations in both hydrophilic interaction chromatography (HILIC) and per aqueous liquid chromatography (PALC) modes was studied by varying key parameters such as buffer concentration and pH, acid additive, organic modifier and column temperature. Experimental data provided some evidences that under PALC conditions cationic solutes are retained predominantly by mixed hydrophobic/ion-exchange interactions. In the HILIC mode, both partitioning and ion-exchange interactions are responsible for the retention of solutes. Compared to PALC, HILIC provided significantly higher efficiencies with less or even no peak tailing, better separation selectivity and greater resistance to overload. In PALC mode gradient elution was required to achieve adequate retentivity of all solutes but selectivity was not sufficient to distinguish between solutes with very similar hydrophobicity. In contrast, under HILIC conditions twelve solutes were almost completely resolved in less than 4 min by using isocratic elution. Summarizing, it could be concluded that ethylene bridged hybrid silica column providing a dual retention mechanism offers the possibility of selecting between the two retention modes with opposite separation selectivity, just by changing the composition of the mobile phase.
研究了 1.7μm 乙烯桥联杂化硅胶相用于分离十二种咪唑基离子液体阳离子的潜力。所有溶质均表现出 U 型保留曲线,在低和高乙腈含量下保留时间均增加。通过改变缓冲液浓度和 pH 值、酸添加剂、有机溶剂和柱温等关键参数,研究了咪唑阳离子在亲水作用色谱(HILIC)和近水相色谱(PALC)模式下的色谱行为。实验数据提供了一些证据,表明在 PALC 条件下,阳离子溶质主要通过混合疏水/离子交换相互作用保留。在 HILIC 模式下,溶质的保留既与分配作用有关,也与离子交换作用有关。与 PALC 相比,HILIC 提供了更高的效率,峰拖尾更小或没有,分离选择性更好,对过载的抵抗力更强。在 PALC 模式下,需要梯度洗脱才能实现所有溶质的足够保留,但选择性不足以区分疏水性非常相似的溶质。相比之下,在 HILIC 条件下,十二种溶质在不到 4 分钟的时间内几乎完全分离,采用等度洗脱。总之,可以得出结论,提供双重保留机制的乙烯桥联杂化硅胶柱可以通过改变流动相的组成在两种相反的分离选择性的保留模式之间进行选择。