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基于梯度的台式核磁共振波谱脉冲序列。

Gradient-based pulse sequences for benchtop NMR spectroscopy.

机构信息

Université Paris-Saclay, ICMMO, UMR CNRS 8182, RMN en Milieu Orienté, France.

Université de Nantes, CNRS, CEISAM UMR 6230, F-44000 Nantes, France.

出版信息

J Magn Reson. 2020 Oct;319:106810. doi: 10.1016/j.jmr.2020.106810.

Abstract

Benchtop NMR spectroscopy has been on the rise for the last decade, by bringing high-resolution NMR in environments that are not easily compatible with high-field NMR. Benchtop spectrometers are accessible, low cost and show an impressive performance in terms of sensitivity with respect to the relatively low associated magnetic field (40-100 MHz). However, their application is limited by the strong and ubiquitous peak overlaps arising from the complex mixtures which are often targeted, often characterized by a great diversity of concentrations and by strong signals from non-deuterated solvents. Such limitations can be addressed by pulse sequences making clever use of magnetic field gradient pulses, capable of performing efficient coherence selection or encoding chemical shift or diffusion information. Gradients pulses are well-known ingredients of high-field pulse sequence recipes, but were only recently made available on benchtop spectrometers, thanks to the introduction of gradient coils in 2015. This article reviews the recent methodological advances making use of gradient pulses on benchtop spectrometers and the applications stemming from these developments. Particular focus is made on solvent suppression schemes, diffusion-encoded, and spatially-encoded experiments, while discussing both methodological advances and subsequent applications. We eventually discuss the exciting development and application perspectives that result from such advances.

摘要

台式核磁共振波谱学在过去十年中得到了快速发展,它将高分辨率的核磁共振应用于那些与高场核磁共振不兼容的环境中。台式光谱仪易于获取且成本低廉,在灵敏度方面表现出了令人印象深刻的性能,与相对较低的磁场(40-100MHz)相关联。然而,它们的应用受到强烈而普遍的峰重叠的限制,这些峰重叠源于复杂的混合物,这些混合物通常具有很大的浓度多样性,并且来自非氘化溶剂的信号很强。可以通过巧妙利用磁场梯度脉冲的脉冲序列来解决这些限制,这些脉冲序列能够有效地进行相干选择或编码化学位移或扩散信息。梯度脉冲是高场脉冲序列配方中的常见成分,但直到 2015 年梯度线圈的引入,才在台式光谱仪上得以应用。本文回顾了近年来在台式光谱仪上利用梯度脉冲取得的方法学进展以及由此产生的应用。特别关注溶剂抑制方案、扩散编码和空间编码实验,同时讨论方法学进展和随后的应用。我们最终讨论了这些进展带来的令人兴奋的发展和应用前景。

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