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通过31P魔角旋转核磁共振光谱探测顺磁性铕取代的Keggin固体中的局部环境。

Probing local environments in paramagnetic europium-substituted Keggin solids by 31P magic angle spinning NMR spectroscopy.

作者信息

Huang Wenlin, Schopfer Mark, Zhang Cheng, Howell Robertha C, Gee Becky A, Francesconi Lynn C, Polenova Tatyana

机构信息

Department of Chemistry and Biochemistry, University of Delaware, Newark, Delaware 19716, USA.

出版信息

J Phys Chem B. 2006 Jun 29;110(25):12340-50. doi: 10.1021/jp061990z.

Abstract

Paramagnetic Eu-substituted Keggin oxopolytungstates crystallize in different forms, determined by the nature of the counterions. The crystal packing is in turn responsible for the variations in the geometry of paramagnetic Eu sites with respect to the anion core. We probed the paramagnetic environments in a series of Eu-substituted Keggin solids, by 31P magic angle spinning NMR spectroscopy. 31P spinning sideband envelopes are dominated by the electron-nuclear dipolar interaction. For the compounds under investigation, both the magnitude and the asymmetry parameter of the electron-nuclear dipolar coupling tensor are sensitive to the mutual arrangements of paramagnetic Eu sites in the crystal lattice. and also report on the stoichiometry of the anion. The electron-nuclear dipolar coupling tensors were calculated from the crystallographic coordinates and the experimentally determined effective magnetic moments, assuming a point dipole approximation. The computed tensors are in very good agreement with the experimental spectra. Furthermore, the P-Eu distance estimates, accurate to within 0.06-0.12 A, can be obtained directly from the magnitude of the electron-nuclear dipolar coupling. This work demonstrates that 31P MAS NMR spectroscopy is a useful probe for investigating local environments in paramagnetic Keggin solids.

摘要

顺磁性铕取代的Keggin型氧代多钨酸盐根据抗衡离子的性质以不同形式结晶。晶体堆积反过来又导致顺磁性铕位点相对于阴离子核心的几何结构发生变化。我们通过31P魔角旋转核磁共振光谱法探测了一系列铕取代的Keggin固体中的顺磁性环境。31P旋转边带包络主要由电子 - 核偶极相互作用主导。对于所研究的化合物,电子 - 核偶极耦合张量的大小和不对称参数都对晶格中顺磁性铕位点的相互排列敏感,并且还报告了阴离子的化学计量。假设点偶极近似,根据晶体学坐标和实验测定的有效磁矩计算电子 - 核偶极耦合张量。计算得到的张量与实验光谱非常吻合。此外,磷 - 铕距离估计值精确到0.06 - 0.12埃以内,可直接从电子 - 核偶极耦合的大小获得。这项工作表明,31P MAS NMR光谱法是研究顺磁性Keggin固体中局部环境的有用探针。

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