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过渡金属氧化物分子导线的钒增强分子内氧化还原性质

Vanadium-Enhanced Intramolecular Redox Property of a Transition-Metal Oxide Molecular Wire.

作者信息

Yang Caona, Zhu Qianqian, Sadakane Masahiro, Zhang Zhenxin, Li Yanshuo, Ueda Wataru

机构信息

School of Material Science and Chemical Engineering, Ningbo University, Fenghua Road 818, Ningbo, Zhejiang 315211, P. R. China.

Department of Applied Chemistry, Hiroshima University, 1-4-1 Kagamiyama, Higashi Hiroshima 739-8527, Japan.

出版信息

Inorg Chem. 2020 Nov 16;59(22):16557-16566. doi: 10.1021/acs.inorgchem.0c02485. Epub 2020 Oct 25.

Abstract

Transition-metal oxide molecular wires are inorganic 1D polymers with elemental diversity. The properties of the materials are tuned by tuning the chemical compositions. The phosphovanadomolybdate molecular wire is synthesized, which is an isostructural material of the phosphomolybdate molecular wire. V is randomly located in the crystal to form {[(HPO)(MoO)(VO)]}, which is incorporated into the material after the formation of the phosphomolybdate molecular wire. The heat-triggered redox reaction via the intramolecular electron-transfer and oxygen-transfer procedure is promoted after V substitution. Oxygen transfers from {VO} to {HPO}, and an electron transfers from {HPO} to {VO} with oxidation of the triangle {HPO} to the corner-sharing tetrahedral {PO} and reduction of the octahedral {VO} to the pyramidal {VO}. The material shows catalytic activity for the aerobic oxidation of alcohol to aldehyde, and good activity with high selectivity is obtained.

摘要

过渡金属氧化物分子线是具有元素多样性的无机一维聚合物。通过调整化学成分来调节材料的性能。合成了磷钒钼酸盐分子线,它是磷钼酸盐分子线的同构材料。钒随机位于晶体中形成{[(HPO)(MoO)(VO)]},在磷钼酸盐分子线形成后掺入材料中。钒取代后,通过分子内电子转移和氧转移过程促进了热引发的氧化还原反应。氧从{VO}转移到{HPO},电子从{HPO}转移到{VO},三角形{HPO}氧化为角共享四面体{PO},八面体{VO}还原为金字塔形{VO}。该材料对醇有氧氧化为醛具有催化活性,且获得了具有高选择性的良好活性。

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