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Electrosorption-Based Modification of Porous Graphitic Carbon: Use of Electrochemically Modulated Liquid Chromatography To Create a Chiral Stationary Phase for Enantiomeric Separations

机译:基于电吸附的多孔石墨碳的修饰:使用电化学调制的液相色谱来创建手性固定相的对映体分离。

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摘要

A novel approach for the modification of the separation capabilities of electrochemically modulated liquid chromatography is described. The basis of the approach derives from the electrosorption of an organic additive from the mobile phase onto a porous graphitic carbon (PGC) stationary phase, resulting in a new dimension in the ability to alter reversibly the chemical composition at the surface of the stationary phase. The viability of the approach is demonstrated by the enantiomeric separation of racemic mixtures of the pharmaceutical agents hexobarbital and mephenytoin. These separations are achieved by the electrosorption of the organic additive β-cyclodextrin to form a PGC surface that is coated with a chiral selector. Results indicate that changes in applied potential can not only manipulate the effectiveness of these separations but can also reverse the enantiomeric elution order. A general mechanism for these separations is proposed and the potential applicability of the strategy to other types of LC separations is briefly noted.
机译:描述了一种用于改变电化学调制液相色谱分离能力的新颖方法。该方法的基础源于将有机添加剂从流动相电吸附到多孔石墨碳(PGC)固定相上,从而在固定相表面可逆地改变化学成分的能力有了新的提高。该方法的可行性通过药物异丁巴比妥和甲妥英的外消旋混合物的对映异构体分离得到证明。这些分离是通过电吸附有机添加剂β-环糊精形成PGC表面形成的,该PGC表面涂有手性选择剂。结果表明,施加电势的变化不仅可以控制这些分离的有效性,而且可以颠倒对映体的洗脱顺序。提出了这些分离的一般机制,并简要指出了该策略对其他类型的LC分离的潜在适用性。

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