Ultrafast 2D NMR for the analysis of complex mixtures

IF 7.3 2区 化学 Q2 CHEMISTRY, PHYSICAL
Célia Lhoste, Benjamin Lorandel, Clément Praud, Achille Marchand, Rituraj Mishra, Arnab Dey, Aurélie Bernard, Jean-Nicolas Dumez, Patrick Giraudeau
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引用次数: 5

Abstract

2D NMR is extensively used in many different fields, and its potential for the study of complex biochemical or chemical mixtures has been widely demonstrated. 2D NMR gives the ability to resolve peaks that overlap in 1D spectra, while providing both structural and quantitative information. However, complex mixtures are often analysed in situations where the data acquisition time is a crucial limitation, due to an ongoing chemical reaction or a moving sample from a hyphenated technique, or to the high-throughput requirement associated with large sample collections. Among the great diversity of available fast 2D methods, ultrafast (or single-scan) 2D NMR is probably the most general and versatile approach for complex mixture analysis. Indeed, ultrafast NMR has undergone an impressive number of methodological developments that have helped turn it into an efficient analytical tool, and numerous applications to the analysis of mixtures have been reported. This review first summarizes the main concepts, features and practical limitations of ultrafast 2D NMR, as well as the methodological developments that improved its analytical potential. Then, a detailed description of the main applications of ultrafast 2D NMR to mixture analysis is given. The two major application fields of ultrafast 2D NMR are first covered, i.e., reaction/process monitoring and metabolomics. Then, the potential of ultrafast 2D NMR for the analysis of hyperpolarized mixtures is described, as well as recent developments in oriented media. This review focuses on high-resolution liquid-state 2D experiments (including benchtop NMR) that include at least one spectroscopic dimension (i.e., 2D spectroscopy and DOSY) but does not cover in depth applications without spectral resolution and/or in inhomogeneous fields.

Abstract Image

用于复杂混合物分析的超快二维核磁共振
二维核磁共振广泛应用于许多不同的领域,其研究复杂生化或化学混合物的潜力已被广泛证明。二维核磁共振提供了在一维光谱中解决重叠峰的能力,同时提供了结构和定量信息。然而,在数据采集时间受到关键限制的情况下,由于正在进行的化学反应或从连字技术中移动的样品,或与大量样品收集相关的高通量要求,通常会分析复杂的混合物。在众多可用的快速二维方法中,超快速(或单扫描)二维核磁共振可能是复杂混合物分析最通用和通用的方法。事实上,超快核磁共振已经经历了令人印象深刻的方法发展,帮助它成为一种有效的分析工具,并且已经报道了许多用于分析混合物的应用。本文首先概述了超快二维核磁共振的主要概念、特点和实际限制,以及提高其分析潜力的方法发展。然后,详细介绍了超快二维核磁共振在混合物分析中的主要应用。首先介绍了超快二维核磁共振的两个主要应用领域,即反应/过程监测和代谢组学。然后,描述了超快二维核磁共振分析超极化混合物的潜力,以及定向介质的最新发展。这篇综述的重点是包括至少一个光谱维度(即二维光谱和DOSY)的高分辨率液态二维实验(包括台式核磁共振),但不包括没有光谱分辨率和/或非均匀场的深入应用。
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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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