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Liquid chromatographic separations with mobile phase additives: Influence of pressure on coupled equilibria

机译:流动相添加剂的液相色谱分离:压力对耦合平衡的影响

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On the basis of equilibrium thermodynamics, pressure can cause a shift in equilibrium for any interaction that exhibits a change in partial molar volume. This shift in equilibrium can be observed in liquid chromatography as a pressure-dependent shift in solute retention. In this paper, the impact of pressure on liquid chromatographic separations with mobile-phase additives is examined from both theoretical and experimental perspectives. The theoretical development for coupled-equilibria separations shown here is general and can be applied to any separation using mobile-phase additives. Predictions indicate that the coupled nature of these equilibria leads to pressure-induced perturbations in partitioning and complexation that can either compete with or complement one another. Using positional isomers and enantiomers as model solutes, experimental retention observations are fully consistent with these predictions, showing the diminution of individual pressure effects for competing cases and enhanced pressure effects for complementary cases. When pressure-induced changes in capacity or retention factor differ between individual solutes, changes in solute selectivity are predicted and observed. Using a C18 stationary phase with P-cyclodextrin as the mobile-phase additive, solutes studied here exhibit changes in selectivity ranging from -7 to +10% for a change in average pressure of similar to 215 bar. Perhaps the most dramatic change in selectivity is observed for the separation of positional isomers where pressure-induced changes in selectivity actually reverse solute elution order. [References: 29]
机译:在平衡热力学的基础上,压力可引起任何表现出部分摩尔体积变化的相互作用的平衡移动。平衡的这种变化可以在液相色谱中作为溶质保留的压力依赖性变化来观察。本文从理论和实验的角度研究了压力对使用流动相添加剂的液相色谱分离的影响。此处显示的耦合平衡分离的理论发展是一般性的,可以应用于使用流动相添加剂的任何分离。预测表明,这些平衡的耦合性质会导致压力引起的分配和络合扰动,从而相互竞争或互补。使用位置异构体和对映异构体作为模型溶质,实验保留观测值与这些预测完全一致,显示出竞争案例中个体压力效应的减少和互补案例中压力效应的增强。当压力引起的容量或保留因子的变化在各个溶质之间不同时,可以预测并观察到溶质选择性的变化。使用C18固定相和P-环糊精作为流动相添加剂,此处研究的溶质的平均压力变化接近215 bar,选择性变化范围为-7%至+ 10%。也许在位置异构体的分离中观察到了选择性的最大变化,其中压力引起的选择性变化实际上逆转了溶质的洗脱顺序。 [参考:29]

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