Christian Doppler Laboratory for Molecular Recognition Materials, Department of Analytical Chemistry and Food Chemistry, University of Vienna, Waehringer Strasse 38, A-1090 Vienna, Austria.
J Chromatogr A. 2010 Feb 5;1217(6):814-56. doi: 10.1016/j.chroma.2009.10.022. Epub 2009 Oct 22.
An overview of the state-of-the-art in LC enantiomer separation is presented. This tutorial review is mainly focused on mechanisms of chiral recognition and enantiomer distinction of popular chiral selectors and corresponding chiral stationary phases including discussions of thermodynamics, additivity principle of binding increments, site-selective thermodynamics, extrathermodynamic approaches, methods employed for the investigation of dominating intermolecular interactions and complex structures such as spectroscopic methods (IR, NMR), X-ray diffraction and computational methods. Modern chiral stationary phases are discussed with particular focus on those that are commercially available and broadly used. It is attempted to provide the reader with vivid images of molecular recognition mechanisms of selected chiral selector-selectand pairs on basis of solid-state X-ray crystal structures and simulated computer models, respectively. Such snapshot images illustrated in this communication unfortunately cannot account for the molecular dynamics of the real world, but are supposed to be helpful for the understanding. The exploding number of papers about applications of various chiral stationary phases in numerous fields of enantiomer separations is not covered systematically.
呈现了 LC 对映异构体分离的最新技术概述。本教程综述主要侧重于讨论手性识别机制和流行的手性选择剂及其相应的手性固定相的对映体区分,包括讨论热力学、结合增量加和性原理、位选择性热力学、超热力学方法、用于研究主导分子间相互作用和复杂结构的方法,如光谱方法(IR、NMR)、X 射线衍射和计算方法。讨论了现代手性固定相,特别关注那些商业上可用且广泛使用的固定相。尝试根据固态 X 射线晶体结构和模拟计算机模型,为读者提供所选手性选择剂-选择剂对的分子识别机制的生动图像。在本通讯中说明的这些静态图像不能说明真实世界的分子动力学,但应该有助于理解。各种手性固定相在对映体分离的众多领域中的应用的大量论文的数量没有得到系统的涵盖。