Laboratory of Physical Chemistry, Department of Chemistry, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece.
Anal Bioanal Chem. 2010 Jul;397(6):2151-9. doi: 10.1007/s00216-009-3381-9. Epub 2010 Jan 26.
The combined effect of the ion-pairing reagent concentration, C(ipr), and organic modifier content, phi, on the retention under phi-gradient conditions at different constant C(ipr) was treated in this study by using two approaches. In the first approach, the prediction of the retention time of a sample solute is based on a direct fitting procedure of a proper retention model to 3-D phi-gradient retention data obtained under the same phi-linear variation but with different slope and time duration of the initial isocratic part and in the presence of various constant C(ipr) values in the eluent. The second approach is based on a retention model describing the combined effect of C(ipr) and phi on the retention of solutes in isocratic mode and consequently analyzes isocratic data obtained in mobile phases containing different C(ipr) values. The effectiveness of the above approaches was tested in the retention prediction of a mixture of 16 underivatized amino acids using mobile phases containing acetonitrile as organic modifier and sodium dodecyl sulfate as ion-pairing reagent. From these approaches, only the first one gives satisfactory predictions and can be successfully used in optimization of ion-pair chromatographic separations under gradient conditions. The failure of the second approach to predict the retention of solutes in the gradient elution mode in the presence of different C(ipr) values was attributed to slow changes in the distribution equilibrium of ion-pairing reagents caused by phi-variation.
本研究采用两种方法考察了在不同恒定 C(ipr) 下,离子对试剂浓度 C(ipr) 和有机改性剂含量 phi 对 phi-梯度条件下保留的综合影响。在第一种方法中,根据适当的保留模型,通过直接拟合 3-D phi-梯度保留数据,预测样品溶质的保留时间,这些数据是在相同 phi-线性变化但初始等度部分斜率和持续时间不同且洗脱液中存在各种恒定 C(ipr) 值的条件下获得的。第二种方法基于一个保留模型,该模型描述了 C(ipr) 和 phi 对溶质在等度模式下保留的综合影响,因此可以分析含有不同 C(ipr) 值的流动相中的等度数据。上述方法的有效性通过使用含有乙腈作为有机改性剂和十二烷基硫酸钠作为离子对试剂的流动相来预测 16 种未衍生氨基酸混合物的保留得到了检验。从这些方法中,只有第一种方法给出了令人满意的预测结果,并可成功用于梯度条件下离子对色谱分离的优化。第二种方法在存在不同 C(ipr) 值的情况下无法预测溶质在梯度洗脱模式下的保留,这归因于 phi 变化引起的离子对试剂分配平衡的缓慢变化。