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多自旋体系的固态磷-31核磁共振光谱:铑-三膦配合物的研究

Solid-state phosphorus-31 NMR spectroscopy of a multiple-spin system: an investigation of a rhodium-triphosphine complex.

作者信息

Bernard Guy M, Feindel Kirk W, Wasylishen Roderick E, Cameron T Stanley

机构信息

Gunning-Lemieux Chemistry Centre, University of Alberta, Edmonton AB, Canada T6G 2G2.

出版信息

Phys Chem Chem Phys. 2008 Sep 28;10(36):5552-63. doi: 10.1039/b803596b. Epub 2008 Jul 21.

Abstract

Phosphorus-31 NMR spectra of solid tris(dimethylphenylphosphine) rhodium(I) hexafluorophosphate have been acquired at several applied magnetic field strengths. The phosphorus nuclei of the three phosphine ligands are spin-spin coupled to each other and to 103Rh, resulting in complex NMR spectra; however, the three phosphorus chemical shift (CS) tensors were determined through the analysis of NMR spectra of slow magic angle spinning and stationary samples. Spectra of spinning samples in rotational resonance and two-dimensional 31P NMR spectra were particularly useful for determining the magnitudes of the indirect spin-spin couplings, and to probe their signs. Despite being in similar environments, the three phosphorus nuclei of the phosphine ligands have distinct CS tensors. In particular, the spans of these tensors, delta11-delta33, range from 80 to 176 ppm. The phosphorus CS tensors have been assigned to specific sites determined by X-ray crystallography, based on a combination of the experimental results and the results of quantum chemical calculations of the phosphorus shielding and 2J(31P,31P) values. The effect of coordination of dimethylphenylphosphine with rhodium has been investigated by comparing calculated phosphorus CS tensors for the uncoordinated ligand with those obtained for the ligands in the complex.

摘要

在多个外加磁场强度下采集了固体[三(二甲基苯基膦)](2,5-降冰片二烯)铑(I)六氟磷酸盐的磷-31核磁共振谱。三个膦配体的磷核彼此之间以及与103Rh存在自旋-自旋耦合,导致核磁共振谱复杂;然而,通过对慢魔角旋转和静态样品的核磁共振谱分析确定了三个磷化学位移(CS)张量。旋转共振中旋转样品的谱图和二维31P核磁共振谱对于确定间接自旋-自旋耦合的大小以及探究其符号特别有用。尽管处于相似环境中,膦配体的三个磷核具有不同的CS张量。特别是,这些张量的跨度,即δ11-δ33,范围为80至176 ppm。基于实验结果以及磷屏蔽和2J(31P,31P)值的量子化学计算结果,已将磷CS张量指定到由X射线晶体学确定的特定位置。通过比较未配位配体的计算磷CS张量与配合物中配体的计算磷CS张量,研究了二甲基苯基膦与铑配位的影响。

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