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杂过渡金属Keggin阴离子的结构和电子性质:α/β-[XW12O40]n-(X = CrVI、VV、TiIV、FeIII、CoIII、NiIII、CoII和ZnII)相对稳定性的密度泛函理论研究

Structural and electronic properties of hetero-transition-metal Keggin anions: a DFT Study of alpha/beta-[XW12O40]n- (X = CrVI, VV, TiIV, FeIII, CoIII, NiIII, CoII, and ZnII) relative stability.

作者信息

Zhang Fu-Qiang, Zhang Xian-Ming, Wu Hai-Shun, Jiao Haijun

机构信息

The State Key Laboratory of Coal Conversion, Institute of Coal Chemistry, Chinese Academy of Sciences, Taiyuan, P. R. China.

出版信息

J Phys Chem A. 2007 Jan 11;111(1):159-66. doi: 10.1021/jp064732a.

DOI:10.1021/jp064732a
PMID:17201398
Abstract

Density functional theory calculations have been carried out to investigate the electronic structures and the alpha/beta relative stability of Keggin-typed [XW(12)O(40)]n- anions with transition metal as heteroatom X (X = Cr(VI), V(V), Ti(IV), Fe(III), Co(III), Ni(III), Co(II) and Zn(II)). Nice agreement in geometries between computation and experiment has been obtained, and the higher stability of the alpha isomer over the beta one has been confirmed. Structural parameter analysis reveals that the {M(3)O(13)} triads in both alpha and beta isomers contract considerably with the increase of the negative anionic charge, while the overall size of both isomers shrinks only slightly. Fragment molecular orbital analysis shows that except alpha/beta-[TiW(12)O(40)]4-, the electronic structures of Keggin anions can be described by the insertion of the e and/or t2 orbital of XO4n- into the frontier orbitals of W(12)O(36) cage, and this leads to the specific redox property, which is different from that of the Keggin anions with main-group elements as heteroatoms. Energy decomposition analysis shows that the enhanced intrinsic stability of the alpha isomer in Td arrangement of W(12)O(36) shell and the larger deformation of the alpha over the beta isomer are two dominating factors and contribute oppositely to the alpha/beta relative stability.

摘要

已进行密度泛函理论计算,以研究以过渡金属作为杂原子X(X = Cr(VI)、V(V)、Ti(IV)、Fe(III)、Co(III)、Ni(III)、Co(II)和Zn(II))的Keggin型[XW(12)O(40)]n-阴离子的电子结构和α/β相对稳定性。计算结果与实验结果在几何结构上取得了良好的一致性,并证实了α异构体比β异构体具有更高的稳定性。结构参数分析表明,α和β异构体中的{M(3)O(13)}三联体随着阴离子负电荷的增加而显著收缩,而两种异构体的整体尺寸仅略有缩小。片段分子轨道分析表明,除了α/β-[TiW(12)O(40)]4-外,Keggin阴离子的电子结构可以通过XO4n-的e和/或t2轨道插入W(12)O(36)笼的前沿轨道来描述,这导致了其特定的氧化还原性质,这与以主族元素作为杂原子的Keggin阴离子不同。能量分解分析表明,W(12)O(36)壳层Td排列中α异构体固有稳定性的增强以及α异构体相对于β异构体的更大变形是两个主要因素,它们对α/β相对稳定性的贡献相反。

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