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杂原子对二钒取代γ-凯gin型多金属氧酸盐电子态的影响。

Effects of heteroatoms on electronic states of divanadium-substituted γ-Keggin-type polyoxometalates.

作者信息

Uehara Kazuhiro, Miyachi Takuya, Nakajima Takahito, Mizuno Noritaka

机构信息

Department of Applied Chemistry, School of Engineering, The University of Tokyo , 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-8656, Japan.

出版信息

Inorg Chem. 2014 Apr 7;53(7):3907-18. doi: 10.1021/ic5005209. Epub 2014 Mar 28.

Abstract

Effects of heteroatoms on electronic states of divanadium-substituted γ-Keggin-type polyoxometalates (TBA)4[γ-XV2W10O38(μ-OH)(μ-OR)] (X = Ge, Si; R = Me, Et, n-Pr, H; TBA = tetra(n-butyl)ammonium) and (TBA)4[γ-XV2W10O38(μ-O)] (X = Ge, Si) were investigated, using a combination of nuclear magnetic resonance spectroscopy and density functional theory (DFT) calculations. Both the substitution of SiO4 heteroatom units with larger GeO4 ones and the introduction of more electronegative alkoxo groups in place of hydroxo groups resulted in deshielding of the vanadium nuclei. DFT calculations using the Def2-SVP basis set at TPSSh level of theory could well-reproduce the anionic moieties of a series of divanadium-substituted γ-Keggin-type polyoxometalates, and the estimated chemical shifts approximately reproduced the experimental ones with the individual gauge localized orbital method (SO-IGLO) taking the spin-orbit interaction into account. The magnetic shielding (σ) consists of σd + σp + σSD + σFC, where σd, σp, σSD, and σFC are diamagnetic, paramagnetic, spin-dipolar, and Fermi contact terms, respectively. The σp changed much among (TBA)4[γ-XV2W10O38(μ-OH)2], (TBA)4[γ-XV2W10O38(μ-OH)(μ-OR)], and (TBA)4[γ-XV2W10O38(μ-O)], while σd, σSD, and σFC did not change much. Therefore, the σp largely contributed to the magnetic shielding. Moreover, σp consisted of the occupied-occupied transitions (s-terms) and the occupied-virtual ones (u-terms), and the u-terms were predominant for σp. The most contributing occupied localized orbital consisted of the dz(2) orbital of vanadium, the pz orbital of terminal oxygen related to the V═O bond, and the pz orbital of oxygen of the XO4 unit, whereas the two virtual localized orbitals consisted of the dyz orbital of vanadium and the py orbital of terminal oxygen. Analysis of the structural and electronic characteristics of a series of divanadium-substituted γ-Keggin-type POMs revealed a linear correlation between both (51)V{H} chemical shifts and the reciprocal values of the energy gaps between the corresponding XO4-predominant orbital HOMOs-X and the LUMOs+X (X = 0, 1, or 2). All these results indicate that neighboring XO4 units weakly interact with the addenda atoms and control the electronic states of polyoxometalates and the magnetic shielding of their addenda atoms.

摘要

采用核磁共振光谱法和密度泛函理论(DFT)计算相结合的方法,研究了杂原子对二钒取代的γ-凯gin型多金属氧酸盐(TBA)4[γ-XV2W10O38(μ-OH)(μ-OR)](X = Ge,Si;R = Me,Et,n-Pr,H;TBA = 四正丁基铵)和(TBA)4[γ-XV2W10O38(μ-O)](X = Ge,Si)电子态的影响。用较大的GeO4单元取代SiO4杂原子单元以及用更具电负性的烷氧基取代羟基,均导致钒核的去屏蔽。在TPSSh理论水平下使用Def2-SVP基组进行的DFT计算能够很好地再现一系列二钒取代的γ-凯gin型多金属氧酸盐的阴离子部分,并且考虑自旋轨道相互作用的个体规范定域轨道方法(SO-IGLO)估计的化学位移大致再现了实验值。磁屏蔽(σ)由σd + σp + σSD + σFC组成,其中σd、σp、σSD和σFC分别是抗磁、顺磁、自旋偶极和费米接触项。σp在(TBA)4[γ-XV2W10O38(μ-OH)2]、(TBA)4[γ-XV2W10O38(μ-OH)(μ-OR)]和(TBA)4[γ-XV2W10O38(μ-O)]之间变化很大,而σd、σSD和σFC变化不大。因此,σp对磁屏蔽有很大贡献。此外,σp由占据-占据跃迁(s项)和占据-虚态跃迁(u项)组成,u项在σp中占主导。贡献最大的占据定域轨道由钒的dz(2)轨道、与V═O键相关的端基氧的pz轨道以及XO4单元的氧的pz轨道组成,而两个虚定域轨道由钒的dyz轨道和端基氧的py轨道组成。对一系列二钒取代的γ-凯gin型多金属氧酸盐的结构和电子特性分析表明,(51)V{H}化学位移与相应的以XO4为主的轨道HOMOs-X和LUMOs+X(X = 0、1或2)之间的能隙倒数之间存在线性相关性。所有这些结果表明,相邻的XO4单元与加合原子弱相互作用,并控制多金属氧酸盐的电子态及其加合原子的磁屏蔽。

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