Multinuclear NMR in polypeptide liquid crystals: Three fertile decades of methodological developments and analytical challenges

IF 7.3 2区 化学 Q2 CHEMISTRY, PHYSICAL Progress in Nuclear Magnetic Resonance Spectroscopy Pub Date : 2020-02-01 DOI:10.1016/j.pnmrs.2019.10.001
Philippe Lesot , Christie Aroulanda , Philippe Berdagué , Abdelkrim Meddour , Denis Merlet , Jonathan Farjon , Nicolas Giraud , Olivier Lafon
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引用次数: 30

Abstract

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.

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多肽液晶中的多核核磁共振:三十年丰富的方法论发展和分析挑战
定向样品的核磁共振波谱在保持高光谱分辨率的同时,可以获得残余的各向异性分子内核磁共振相互作用,如化学位移各向异性(RCSA)、偶极耦合(RDC)和四极耦合(RQC)。此外,在手性取向环境下,手性分子的对映体或前手性化合物的对映元素在核磁共振时标上的平均取向不同,从而产生不同的核磁共振波谱或信号。手性对准介质中的核磁共振波谱是一种强大的分析工具,特别是在(亲)手性分析、自然同位素分馏、立体化学以及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,特别是利用螺旋手性聚合物(如PBLG)在有机溶剂中的有机溶液制成的多肽基手性液晶(CLCs)。本文综述了核磁共振在聚合物lc中的应用。特别是,我们描述了理论工具和主要的核磁共振方法,已经开发和应用于研究(亲)手性分子溶解在这种定向溶剂。我们还讨论了具有代表性的应用,说明了这个原始的核磁共振工具的分析潜力。这篇综述文章致力于30年来对基于多肽的手性液晶的核磁共振波谱学发展的原始贡献。
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来源期刊
CiteScore
14.30
自引率
8.20%
发文量
12
审稿时长
62 days
期刊介绍: Progress in Nuclear Magnetic Resonance Spectroscopy publishes review papers describing research related to the theory and application of NMR spectroscopy. This technique is widely applied in chemistry, physics, biochemistry and materials science, and also in many areas of biology and medicine. The journal publishes review articles covering applications in all of these and in related subjects, as well as in-depth treatments of the fundamental theory of and instrumental developments in NMR spectroscopy.
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