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Pressure-Dependent Retention and Selectivity in Reversed-Phase Liquid Chromatographic Separations Using β-Cyclodextrin Stationary Phases

机译:β-环糊精固定相在反相液相色谱分离中的压力相关保留和选择性

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摘要

The influence of pressure on solute retention in liquid chromatography is commonly ignored due to the small compressibility of polar mobile phases. However, the equilibrium processes driving solute retention may be significantly affected by pressure, even under the modest conditions commonly encountered in HPLC (< 350 bar). In this paper, we examine the role of pressure in separations where the primary mechanism for solute retention is inclusion complexation. Using the positional isomers of nitrophenol as model solutes, pressure-induced decreases in solute capacity factor ranging from -2.1% to -35.1% are observed experimentally for pressures from 40 to 340 bar. Individual contributions of pressure-induced solute ionization and complexation to this pressure-dependent solute retention are isolated by controlling mobile-phase pH. Pressure-induced dissociation of the cyclodextrin-solute complex appears to play the primary role in determining the pressure dependence of solute retention. Experimentally observed selective perturbation in solute retention with pressure is shown to-have a direct impact on chromatographic resolution. In addition, the magnitude of the pressure-induced decrease in solute retention is demonstrated to be a function of the mobile-phase solvent strength. This previously underappreciated pressure effect has clear implications for time practical application of cyclodextrin stationary phases, as well as for the fundamental interpretation of those thermodynamic parameters central to the separation process.
机译:由于极性流动相的可压缩性小,因此通常无法忽略压力对液相色谱中溶质保留的影响。但是,即使在HPLC中常见的适度条件下(<350 bar),驱动溶质保留的平衡过程也可能受到压力的显着影响。在本文中,我们研究了压力在分离中的作用,其中溶质保留的主要机理是夹杂物络合。使用硝基苯酚的位置异构体作为模型溶质,在40至340 bar的压力下,实验观察到压力诱导的溶质容量因数下降,范围为-2.1%至-35.1%。通过控制流动相的pH值,可以分离出压力诱导的溶质离子化和络合对此压力相关溶质保留的单独作用。压力引起的环糊精-溶质复合物的离解似乎在确定溶质保留的压力依赖性中起主要作用。实验观察到在压力下溶质保留的选择性扰动对色谱分离度有直接影响。此外,已证明压力引起的溶质保留降低的幅度是流动相溶剂强度的函数。这种先前未被充分认识到的压力效应对于环糊精固定相的时间实际应用以及对分离过程中至关重要的那些热力学参数的基本解释有着明显的含义。

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