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三芳基膦铟三卤化物加合物的固态 115In 和 31P NMR 研究。

Solid-state 115In and 31P NMR studies of triarylphosphine indium trihalide adducts.

机构信息

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

出版信息

J Am Chem Soc. 2010 Apr 21;132(15):5479-93. doi: 10.1021/ja100625p.

Abstract

Solid-state (115)In and (31)P NMR spectroscopy, relativistic density functional theory (DFT) calculations, and single-crystal X-ray diffraction were used to investigate a series of triarylphosphine indium(III) trihalide adducts, X(3)In(PR(3)) and X(3)In(PR(3))(2) (X = Cl, Br or I; PR(3) = triarylphosphine ligand). The electric field gradient tensors at indium as well as the indium and phosphorus magnetic shielding tensors and the direct and indirect (115)In-(31)P spin-spin coupling were characterized; for complexes possessing a C(3) symmetry axis, the anisotropy in the indirect spin-spin coupling, DeltaJ((115)In,(31)P), was also determined. The (115)In quadrupolar coupling constants, C(Q)((115)In), range from +/-1.25 +/- 0.10 to -166.0 +/- 2.0 MHz. For any given phosphine ligand, the indium nuclei are most shielded for X = I and least shielded for X = Cl, a trend also observed for other group-13 nuclei in M(III) complexes. This experimental trend, attributed to spin-orbit effects of the halogen ligands, is reproduced by the DFT calculations. The spans of the indium magnetic shielding tensors for these complexes, delta(11)-delta(33), range from 40 +/- 7 to 710 +/- 60 ppm; those determined for phosphorus range from 28 +/- 1.5 to 50 +/- 3 ppm. Values of (1)J((115)In,(31)P) range from 550 +/- 20 to 2500 +/- 20 Hz. For any given halide, the (1)J((115)In,(31)P) values generally increase with increasing basicity of the PR(3) ligand. Calculated values of (1)J((115)In,(31)P) and DeltaJ((115)In,(31)P) duplicate experimental trends and indicate that both the Fermi-contact and spin-dipolar Fermi-contact mechanisms make important contributions to the (1)J((115)In,(31)P) tensors.

摘要

采用固态(115)In 和(31)P NMR 光谱、相对论密度泛函理论(DFT)计算和单晶 X 射线衍射研究了一系列三芳基膦铟(III)三卤化物加合物 X(3)In(PR(3)) 和 X(3)In(PR(3))(2)(X = Cl、Br 或 I;PR(3) = 三芳基膦配体)。研究了铟的电场梯度张量以及铟和磷的磁屏蔽张量和直接和间接(115)In-(31)P 自旋-自旋耦合;对于具有 C(3)对称轴的配合物,还确定了间接自旋-自旋耦合的各向异性,DeltaJ((115)In,(31)P)。(115)In 四极耦合常数 C(Q)((115)In) 的范围为 +/-1.25 +/- 0.10 至-166.0 +/- 2.0 MHz。对于任何给定的膦配体,对于 X = I 的铟核被屏蔽最大,对于 X = Cl 的铟核被屏蔽最小,这也是其他 Group-13 核在 M(III)配合物中的趋势。这种实验趋势归因于卤化物配体的自旋轨道效应,DFT 计算再现了这种趋势。这些配合物的铟磁屏蔽张量的跨度 delta(11)-delta(33) 的范围为 40 +/- 7 至 710 +/- 60 ppm;对于磷的范围为 28 +/- 1.5 至 50 +/- 3 ppm。(115)In-(31)P 的(1)J((115)In,(31)P) 值的范围为 550 +/- 20 至 2500 +/- 20 Hz。对于任何给定的卤化物,(1)J((115)In,(31)P) 值通常随 PR(3)配体的碱性增加而增加。(1)J((115)In,(31)P) 和 DeltaJ((115)In,(31)P) 的计算值复制了实验趋势,并表明 Fermi 接触和自旋偶极 Fermi 接触机制都对(1)J((115)In,(31)P) 张量做出了重要贡献。

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