NMR Research Unit, University of Oulu, P.O. Box 3000, FIN-90014, Finland.
NMR Research Unit, University of Oulu, P.O. Box 3000, FIN-90014, Finland; Centre of New Technologies, University of Warsaw, Banacha 2c, 02-097 Warsaw, Poland.
Prog Nucl Magn Reson Spectrosc. 2021 Oct-Dec;126-127:101-120. doi: 10.1016/j.pnmrs.2021.07.001. Epub 2021 Jul 14.
Relaxation and diffusion NMR measurements offer an approach to studying rotational and translational motion of molecules non-invasively, and they also provide chemical resolution complementary to NMR spectra. Multidimensional experiments enable the correlation of relaxation and diffusion parameters as well as the observation of molecular exchange phenomena through relaxation or diffusion contrast. This review describes how to accelerate multidimensional relaxation and diffusion measurements significantly through spatial encoding. This so-called ultrafast Laplace NMR approach shortens the experiment time to a fraction and makes even single-scan experiments possible. Single-scan experiments, in turn, significantly facilitate the use of nuclear spin hyperpolarization methods to boost sensitivity. The ultrafast Laplace NMR method is also applicable with low-field, mobile NMR instruments, and it can be exploited in many disciplines. For example, it has been used in studies of the dynamics of fluids in porous materials, identification of intra- and extracellular metabolites in cancer cells, and elucidation of aggregation phenomena in atmospheric surfactant solutions.
弛豫和扩散 NMR 测量提供了一种非侵入性研究分子旋转和平移运动的方法,它们还提供了与 NMR 谱互补的化学分辨率。多维实验能够关联弛豫和扩散参数,并通过弛豫或扩散对比观察分子交换现象。本综述介绍了如何通过空间编码显著加速多维弛豫和扩散测量。这种所谓的超快拉普拉斯 NMR 方法将实验时间缩短到一小部分,甚至可以实现单次扫描实验。反过来,单次扫描实验显著促进了利用核自旋超极化方法来提高灵敏度。超快拉普拉斯 NMR 方法也适用于低场、移动 NMR 仪器,并可应用于多个领域。例如,它已被用于研究多孔材料中流体的动力学、癌细胞内和细胞外代谢物的鉴定,以及大气表面活性剂溶液中聚集现象的阐明。