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Prediction for the separation efficiency of a pair of enantiomers during chiral high-performance liquid chromatography using a quartz crystal microbalance

机译:使用石英晶体微量天平预测手性高效液相色谱法中一对对映异构体的分离效率

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A simple and rapid screening method of the chiral stationary phase during high-performance liquid chromatography (HPLC) utilizing a quartz crystal microbalance (QCM) has been developed for the chiral separation of a pair of enantiomers. The outline of the method is as follows: a self-assembled monolayer (SAM) is constructed on the gold electrodes of the QCM sensor chips by utilizing the interaction between thiols and gold. The chiral selectors used as chiral stationary phases in the HPLC are then immobilized, and a pseudostationary phase is constructed on the electrodes. Subsequently, the sensors are equilibrated in the solutions, the targeted chiral samples are injected, and the frequency changes are observed. Four kinds of chiral molecules and three kinds of chiral stationary phases were examined in this study. When chiral separation is possible using the chiral stationary phase immobilized on the sensors, significant differences in the frequency changes are observed because the intensities based on interactions differ among the isomers. The developed method can predict not only the possibility for chiral separation but also the elution order from the chiral stationary phase column. Furthermore, the degree of the mutual separation of a pair of enantiomers seems to be roughly predictable from the difference in the frequency change (Delta F) and first-order association rate constant (k(obs)). The method does not require several different kinds of chiral columns that are more expensive than achiral ones such as the octadecylsilica (ODS) column. The required amounts of the chiral stationary phases are extremely small, and the sensors with immobilized chiral selectors are reusable. In addition, the method requires only a few minutes to complete the analysis. Thus, considerable reductions in both cost and time are realized. By applying the developed method to many chiral molecules and chiral stationary phases, its superiority may be corroborated; thus, it is expected that the method can be effectively used for the selection of chiral stationary phases.
机译:已开发出一种利用石英晶体微量天平(QCM)在高效液相色谱(HPLC)中手性固定相的简单快速筛选方法,用于手性对对映体的分离。该方法的概述如下:利用硫醇和金之间的相互作用,在QCM传感器芯片的金电极上构建自组装单层(SAM)。然后固定在HPLC中用作手性固定相的手性选择剂,并在电极上构建拟平稳相。随后,将传感器在溶液中平衡,注入目标手性样品,并观察频率变化。本研究考察了四种手性分子和三种手性固定相。当使用固定在传感器上的手性固定相进行手性分离时,由于异构体之间基于相互作用的强度不同,因此会观察到频率变化的显着差异。所开发的方法不仅可以预测手性分离的可能性,还可以预测手性固定相色谱柱的洗脱顺序。此外,根据频率变化(ΔF)和一阶缔合速率常数(k(obs))的差异,可以大致预测一对对映异构体的相互分离程度。该方法不需要几种比手性更昂贵的手性色谱柱,例如十八烷基硅胶(ODS)色谱柱。手性固定相所需的量极少,具有固定手性选择器的传感器可重复使用。此外,该方法仅需几分钟即可完成分析。因此,实现了成本和时间的显着减少。通过将开发的方法应用于许多手性分子和手性固定相,可以证实其优越性。因此,期望该方法可以有效地用于手性固定相的选择。

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