Pappa-Louisi A, Nikitas P, Papachristos K, Zisi C
Laboratory of Physical Chemistry, Department of Chemistry, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece.
J Chromatogr A. 2008 Aug 1;1201(1):27-34. doi: 10.1016/j.chroma.2008.05.083. Epub 2008 Jun 3.
Models considering simultaneously mobile phase organic content and column temperature were developed in this study by an extension of different equations describing the influence of temperature on solute retention. This extension was achieved by two methods: a semi-thermodynamic and a direct combination of equations expressed separately the dependence of the retention upon each of these factors. The above approaches gave a great number of expressions for the logarithm of the solute retention factor in terms of both temperature and organic content in the mobile phase, ln k(T,phi), determined from the dependence of the standard enthalpy of the retention process on T. From the final expressions of ln k(T,phi) we tested only those with the minimum number of adjustable parameters, i.e. those that correspond to a constant standard enthalpy of the retention process. For this test we examined the retention behaviour of a sample of alkylbenzenes in aqueous acetonitrile eluents. These compounds exhibit ln k versus 1/T plots with a very small curvature. We found that a new equation for ln k(T,phi) based on the adsorption model for retention performs better than all the others. The average percentage prediction error ranges from 0.7 to 1.4%.
本研究通过扩展描述温度对溶质保留影响的不同方程,建立了同时考虑流动相有机含量和柱温的模型。这种扩展通过两种方法实现:一种是半热力学方法,另一种是将分别表示保留对每个因素依赖性的方程直接组合。上述方法给出了大量关于溶质保留因子对数的表达式,该对数表示为温度和流动相有机含量的函数,即ln k(T,φ),它由保留过程的标准焓对T的依赖性确定。从ln k(T,φ)的最终表达式中,我们只测试了那些可调参数数量最少的表达式,即那些对应于保留过程标准焓恒定的表达式。为了进行此测试,我们研究了烷基苯样品在乙腈水溶液洗脱剂中的保留行为。这些化合物的ln k与1/T曲线具有非常小的曲率。我们发现,基于保留吸附模型的ln k(T,φ)新方程比所有其他方程表现更好。平均预测误差百分比范围为0.7%至1.4%。