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第12族金属硒化物单源前驱体的固态核磁共振研究;M[N(iPr₂PSe)₂]₂(M = Zn、Cd、Hg)

A solid-state NMR investigation of single-source precursors for group 12 metal selenides; M[N(iPr2PSe)2]2 (M = Zn, Cd, Hg).

作者信息

Demko Bryan A, Wasylishen Roderick E

机构信息

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

出版信息

Dalton Trans. 2008 Jan 28(4):481-90. doi: 10.1039/b712011g. Epub 2007 Oct 22.

Abstract

The first solid-state NMR investigation of dichalcogenoimidodiphosphinato complexes, MN(R(2)PE)(2), is presented. The single-source precursors for metal-selenide materials, MN((i)Pr(2)PSe)(2) (M = Zn, Cd, Hg), were studied by solid-state (31)P, (77)Se, (113)Cd, and (199)Hg NMR at 4.7, 7.0, and 11.7 T, representing the only (77)Se NMR measurements, and in the case of CdN((i)Pr(2)PSe)(2)(113)Cd NMR measurements, to have been performed on these complexes. Residual dipolar coupling between (14)N and (31)P was observed in solid-state (31)P NMR spectra at 4.7 and 7.0 T yielding average values of R((31)P,(14)N)(eff) = 880 Hz, C(Q)((14)N) = 3.0 MHz, (1)J((31)P,(14)N)(iso) = 15 Hz, alpha = 90 degrees , beta = 26 degrees . The solid-state NMR spectra obtained were used to determine the respective phosphorus, selenium, cadmium, and mercury chemical shift tensors along with the indirect spin-spin coupling constants: (1)J((77)Se,(31)P)(iso), (1)J((111/113)Cd,(77)Se)(iso), (1)J((199)Hg,(77)Se)(iso), and (2)J((199)Hg,(31)P)(iso). Density functional theory magnetic shielding tensor calculations were performed yielding the orientations of the corresponding chemical shift tensors. For this series of complexes the phosphorus magnetic shielding tensors are essentially identical, the selenium magnetic shielding tensors are also very similar with respect to each other, and the magnetic shielding tensors of the central metals, cadmium and mercury, display near axial symmetry demonstrating an expected deviation from local S(4) symmetry.

摘要

本文首次报道了二硫属元素亚氨基二膦酸酯配合物MN(R(2)PE)(2)的固态核磁共振研究。对金属硒化物材料的单源前驱体MN((i)Pr(2)PSe)(2)(M = Zn、Cd、Hg)在4.7、7.0和11.7 T磁场下进行了固态(31)P、(77)Se、(113)Cd和(199)Hg核磁共振研究,这是对这些配合物进行的唯一(77)Se核磁共振测量,对于CdN((i)Pr(2)PSe)(2)还进行了(113)Cd核磁共振测量。在4.7和7.0 T磁场下的固态(31)P核磁共振谱中观察到(14)N和(31)P之间的剩余偶极耦合,得到的R((31)P,(14)N)(eff) = 880 Hz、C(Q)((14)N) = 3.0 MHz、(1)J((31)P,(14)N)(iso) = 15 Hz、α = 90°、β = 26°的平均值。所获得的固态核磁共振谱用于确定各自的磷、硒、镉和汞化学位移张量以及间接自旋 - 自旋耦合常数:(1)J((77)Se,(31)P)(iso)、(1)J((111/113)Cd,(77)Se)(iso)、(1)J((199)Hg,(77)Se)(iso)和(2)J((199)Hg,(31)P)(iso)。进行了密度泛函理论磁屏蔽张量计算,得出了相应化学位移张量的取向。对于这一系列配合物,磷磁屏蔽张量基本相同,硒磁屏蔽张量彼此也非常相似,中心金属镉和汞的磁屏蔽张量显示出近轴对称性,表明预期偏离局部S(4)对称性。

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