Khenkin A M, Neumann R
Department of Organic Chemistry, Weizmann Institute of Science, Rehovot 76100, Israel.
Inorg Chem. 2000;39(16):3455-62. doi: 10.1021/ic990606s.
For the first time, mixed-addenda vanadium-substituted polyfluorooxometalates, PFOMs, have been synthesized. Depending on the workup procedure used, two types of compounds were prepared. The first PFOM was a quasi Wells--Dawson type compound, [H2F6NaVVW17O56]8-, and the second a mixture of vanadium-substituted polyfluorooxometalates of the Keggin structure, XVIVW11FnO40 - n (X = H2, V, W; n = 1-4). From the X-ray diffraction analysis, [H2F6NaVVW17O56]8- has an elliptic (egg) shape with a central sodium atom surrounded by six fluorine atoms in a trigonal prism coordination. One may differentiate between two types of addenda atoms to be found in belt and capped positions. According to 1H, 19F, and 51V NMR analysis, it is concluded that vanadium is isomorphically substituted in both the belt and capped position of [H2F6NaVVW17O56]8-. The mixture of vanadium-substituted PFOMs of the Keggin structure was shown, by HPLC and ESR, to contain at least two species of different charge and of a different vanadium environment. The [H2F6NaVVW17O56]8- PFOM was active for the catalytic aerobic oxidation of alkyl aromatic compounds in biphasic (water-catalyst and substrate) media. The reaction selectivity (autoxidation versus oxydehydrogenation) depended on the substrate and reaction conditions such as temperature and oxygen pressure. The selectivity to oxydehydrogenation was significantly higher compared to the prototypical cobalt acetate catalytic system.
首次合成了混合附加原子的钒取代多氟氧金属酸盐(PFOMs)。根据所采用的后处理程序,制备了两种类型的化合物。第一种PFOM是一种准韦尔斯-道森型化合物[H₂F₆NaVVW₁₇O₅₆]⁸⁻,第二种是具有Keggin结构的钒取代多氟氧金属酸盐XVIVW₁₁FₙO₄₀⁻ⁿ(X = H₂、V、W;n = 1 - 4)的混合物。通过X射线衍射分析,[H₂F₆NaVVW₁₇O₅₆]⁸⁻具有椭圆形(蛋形)结构,中心钠原子被六个氟原子以三角棱柱配位方式包围。可以区分在带状和盖帽位置发现的两种类型的附加原子。根据¹H、¹⁹F和⁵¹V NMR分析,得出钒在[H₂F₆NaVVW₁₇O₅₆]⁸⁻的带状和盖帽位置均发生同晶取代。通过HPLC和ESR表明,具有Keggin结构的钒取代PFOMs混合物至少包含两种电荷不同且钒环境不同的物种。[H₂F₆NaVVW₁₇O₅₆]⁸⁻ PFOM在双相(水 - 催化剂和底物)介质中对烷基芳香化合物的催化需氧氧化具有活性。反应选择性(自动氧化与氧脱氢)取决于底物以及温度和氧气压力等反应条件。与典型的醋酸钴催化体系相比,氧脱氢的选择性明显更高。