Université Paris Sud/Université Paris-Saclay, UMR CNRS 8182, Institut de Chimie Moléculaire et des Matériaux d'Orsay, ICMMO, Equipe RMN en Milieu Orienté, Bât. 410, 15 rue du Doyen Georges Poitou, F-91405 Orsay cedex, France; Centre National de la Recherche Scientifique (CNRS), France.
Université Paris Sud/Université Paris-Saclay, UMR CNRS 8182, Institut de Chimie Moléculaire et des Matériaux d'Orsay, ICMMO, Equipe RMN en Milieu Orienté, Bât. 410, 15 rue du Doyen Georges Poitou, F-91405 Orsay cedex, France.
Prog Nucl Magn Reson Spectrosc. 2020 Feb;116:85-154. doi: 10.1016/j.pnmrs.2019.10.001. Epub 2019 Nov 6.
NMR spectroscopy of oriented samples makes accessible residual anisotropic intramolecular NMR interactions, such as chemical shift anisotropy (RCSA), dipolar coupling (RDC), and quadrupolar coupling (RQC), while preserving high spectral resolution. In addition, in a chiral aligned environment, enantiomers of chiral molecules or enantiopic elements of prochiral compounds adopt different average orientations on the NMR timescale, and hence produce distinct NMR spectra or signals. NMR spectroscopy in chiral aligned media is a powerful analytical tool, and notably provides unique information on (pro)chirality analysis, natural isotopic fractionation, stereochemistry, as well as molecular conformation and configuration. Significant progress has been made in this area over the three last decades, particularly using polypeptide-based chiral liquid crystals (CLCs) made of organic solutions of helically chiral polymers (as PBLG) in organic solvents. This review presents an overview of NMR in polymeric LCs. In particular, we describe the theoretical tools and the major NMR methods that have been developed and applied to study (pro)chiral molecules dissolved in such oriented solvents. We also discuss the representative applications illustrating the analytical potential of this original NMR tool. This overview article is dedicated to thirty years of original contributions to the development of NMR spectroscopy in polypeptide-based chiral liquid crystals.
NMR 光谱学对取向样品具有重要意义,它可以提供残留各向异性的分子内 NMR 相互作用,如化学位移各向异性(RCSA)、偶极耦合(RDC)和四极耦合(RQC),同时保持高的光谱分辨率。此外,在手性取向环境中,手性分子的对映体或前手性化合物的对映元素在 NMR 时间尺度上采用不同的平均取向,因此产生不同的 NMR 谱或信号。手性取向介质中的 NMR 光谱学是一种强大的分析工具,特别是在手性(前)分析、天然同位素分馏、立体化学、分子构象和构型方面提供了独特的信息。在过去的三十年中,这一领域取得了重大进展,特别是使用基于多肽的手性液晶(CLC),这些 CLC 由有机溶液中的螺旋手性聚合物(如 PBLG)制成,存在于有机溶剂中。这篇综述介绍了聚合物 LCs 中的 NMR。特别是,我们描述了为研究溶解在这些定向溶剂中的(前)手性分子而开发和应用的理论工具和主要 NMR 方法。我们还讨论了一些代表性的应用案例,说明了这种原始 NMR 工具的分析潜力。这篇综述文章是为了纪念在基于多肽的手性液晶中发展 NMR 光谱学方面的三十年原始贡献而撰写的。