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分子中核磁共振屏蔽的测量

Measurements of Nuclear Magnetic Shielding in Molecules.

作者信息

Jackowski Karol, Wilczek Marcin

机构信息

Laboratory of NMR Spectroscopy, Faculty of Chemistry, University of Warsaw, Pasteura 1, 02-093 Warsaw, Poland.

出版信息

Molecules. 2024 Jun 2;29(11):2617. doi: 10.3390/molecules29112617.

Abstract

The origin of nuclear magnetic shielding in diamagnetic molecules is discussed, pointing out various contributions to the shielding from electrons and the effects of intra- and intermolecular interactions. In NMR practice, chemical shifts are determined first as the measure of shielding in observed samples. The descriptions of shielding and chemical shifts are not fully consistent. Gas phase studies permit the withdrawal of intermolecular contributions from shielding and obtaining the magnetic shielding data in isolated molecules. The shielding determination in molecules is possible using at least three methods delivering the reference shielding standards for selected nuclei. The known shielding of one magnetic nucleus can be transferred to other nuclei if the appropriate nuclear magnetic moments are available with satisfactory accuracy. It is possible to determine the nuclear magnetic dipole moments using the most advanced ab initio shielding calculations jointly with the NMR frequencies measurements for small-sized isolated molecules. Helium-3 gas is postulated as all the molecules' primary and universal reference standard of shielding. It can be easily applied using common deuterium lock solvents as the secondary reference standards. The measurements of absolute shielding are available for everyone with the use of standard NMR spectrometers.

摘要

讨论了抗磁性分子中核磁屏蔽的起源,指出了电子对屏蔽的各种贡献以及分子内和分子间相互作用的影响。在核磁共振实践中,首先确定化学位移作为观察样品中屏蔽的度量。屏蔽和化学位移的描述并不完全一致。气相研究允许从屏蔽中去除分子间贡献,并获得孤立分子中的磁屏蔽数据。使用至少三种方法为选定的原子核提供参考屏蔽标准,可以确定分子中的屏蔽。如果能以令人满意的精度获得适当的核磁矩,则可以将一个磁核的已知屏蔽转移到其他核上。对于小型孤立分子,可以使用最先进的从头算屏蔽计算结合核磁共振频率测量来确定核磁偶极矩。假设氦 - 3气体是所有分子的主要和通用屏蔽参考标准。使用常见的氘锁定溶剂作为二级参考标准,可以轻松应用它。使用标准核磁共振光谱仪,每个人都可以进行绝对屏蔽的测量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c9a9/11173999/1378e826476a/molecules-29-02617-g001.jpg

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