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顺磁共振、磁化率和核磁共振的协同与竞争:六配位钴(II)配合物磁相互作用参数的案例研究。

A Synergy and Struggle of EPR, Magnetometry and NMR: A Case Study of Magnetic Interaction Parameters in a Six-Coordinate Cobalt(II) Complex.

机构信息

A.N.Nesmeyanov Institute of Organoelement Compounds, Russian Academy of Sciences, Vavilova str. 28, Moscow 119991, Russia.

Moscow Institute of Physics and Technology, Institutskiy per. 9, Dolgoprudny, Moscow 141701, Russia.

出版信息

Inorg Chem. 2020 Aug 3;59(15):10746-10755. doi: 10.1021/acs.inorgchem.0c01191. Epub 2020 Jul 16.

Abstract

Herein, we combine for the first time SQUID magnetometry, cw-EPR, THz-EPR, and paramagnetic NMR spectroscopies to study the magnetic properties of a high-spin cobalt(II) heteroscorpionate complex. Complementary information provided by these methods allowed precise determination of the magnetic interaction parameters, thereby removing the ambiguity inherit to single-method studies. We systematically investigate the extent to which information about the magnetic interaction parameters can be deduced from reduced data sets. The detailed study revealed significant different magnetic properties in solid state and solution. To further exploit the information content of the solution NMR experimental results, we introduce the new concept of reduced paramagnetic shift. It allows for the determination of the magnetic axes and, subsequently, full NMR signal assignment. It is shown that even in complicated cases, in which common NMR analytics (integral intensities, relaxation factors, etc.) fail, it yields robust results.

摘要

在这里,我们首次将 SQUID 磁强计、连续波 EPR、太赫兹 EPR 和顺磁 NMR 光谱学结合起来,研究了一种高自旋钴(II)异蝎配合物的磁性。这些方法提供的互补信息允许精确确定磁相互作用参数,从而消除了单方法研究固有的模糊性。我们系统地研究了从简化数据集推断磁相互作用参数信息的程度。详细研究表明,在固态和溶液中,磁性参数的信息有显著差异。为了进一步利用溶液 NMR 实验结果的信息含量,我们引入了顺磁位移简化的新概念。它允许确定磁轴,随后进行完整的 NMR 信号分配。结果表明,即使在常见 NMR 分析(积分强度、弛豫因子等)失败的复杂情况下,它也能得到稳健的结果。

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