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新型氟化聚(钼酸盐)的合成与表征

Synthesis and characterization of novel fluorinated poly(oxomolybdates).

作者信息

Michailovski Alexej, Rüegger Heinz, Sheptyakov Denis, Patzke Greta R

机构信息

Laboratory for Inorganic Chemistry, ETH Zürich, CH-8093 Zürich, Switzerland.

出版信息

Inorg Chem. 2006 Jul 10;45(14):5641-52. doi: 10.1021/ic0604359.

Abstract

Two novel poly(oxofluoromolybdate) clusters, [Mo6O18F6]6- and [Mo7O22F3]5-, have emerged from systematic field studies on the hydrothermal fluorination of poly(oxometalates). They are accessible via the hydrothermal treatment of Mo(VI)-based precursors in the presence of MF additives (M = Li, Na, Cs, NMe4). The new fluorinated polyanions are stabilized by specific alkali-cation combinations, and their packing motifs can be tuned through the careful choice of cations and synthetic parameters. The [Mo6O18F6]6- anion can be described as a cored and fluorinated form of the Anderson-Evans cluster type. It is stabilized by the interaction of two alkali cations with the fluorinated faces of the ring-shaped anion. The partial replacement of these capping alkali cations by the bulky, organic NMe4(+) cation leads to the formation of Mo7O22F3-based compounds. Thus, the extent of fluorination can be controlled through the polarizability of the cationic environment: in the [Mo7O22F3]5- anion, half of the fluoride atoms of the [Mo6O18F6]6- anion are replaced by a capping MoO4 tetrahedron, thereby rendering this anion a fluorinated, lacunar derivative of the alpha-[Mo8O26]4- octamolybdate anion. All compounds have been structurally characterized by single-crystal X-ray diffraction and solid-state NMR spectroscopy. The templating role of the alkali cations is discussed and explained with the help of electrostatic calculations.

摘要

通过对多金属氧酸盐水热氟化的系统研究,出现了两种新型的聚(氧氟钼酸盐)簇合物,即[Mo6O18F6]6-和[Mo7O22F3]5-。它们可通过在MF添加剂(M = Li、Na、Cs、NMe4)存在下对基于Mo(VI)的前体进行水热处理而获得。新的氟化聚阴离子通过特定的碱金属阳离子组合得以稳定,并且可以通过仔细选择阳离子和合成参数来调节它们的堆积模式。[Mo6O18F6]6-阴离子可被描述为安德森 - 埃文斯簇类型的有核且氟化的形式。它通过两个碱金属阳离子与环状阴离子的氟化面的相互作用而稳定。这些封端碱金属阳离子被体积较大的有机NMe4(+)阳离子部分取代,导致形成基于Mo7O22F3的化合物。因此,氟化程度可以通过阳离子环境的极化率来控制:在[Mo7O22F3]5-阴离子中,[Mo6O18F6]6-阴离子一半的氟原子被一个封端的MoO4四面体取代,从而使该阴离子成为α-[Mo8O26]4-八钼酸盐阴离子的氟化、有空腔的衍生物。所有化合物均通过单晶X射线衍射和固态核磁共振光谱进行了结构表征。借助静电计算对碱金属阳离子的模板作用进行了讨论和解释。

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