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Hetero and lacunary polyoxovanadate chemistry: Synthesis, reactivity and structural aspects

机译:杂和腔型聚氧钒酸盐化学:合成,反应性和结构方面

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Many synthetic methods for heteropolyoxovanadates and lacunary polyoxovanadates have been developed in recent years. We outline various approaches used to produce new polyoxovanadate species, including heterometal-incorporated complexes of tetravanadates, hexavanadates, decavanadates and dodecavanadates. In particular, three types of synthetic routes are explored; based on (i) coordination of metavanadate species to transition metal cations, (ii) oxidation of reduced polyoxovanadates, and (iii) template synthesis. Metavanadate species can coordinate to metal cations as inorganic macrocyclic lig-ands to form heteropolyoxovanadates. The incorporation of a heterometal cation into decavanadates has also been reported. The oxidation reaction of reduced polyoxovanadates provides a new route to the formation of the lacunary polyoxovanadates, which can serve as inorganic host molecules. Dodecavanadates are bowl-type molecules of particular structural interest; a chloride anion can be incorporated into the bowl through a template synthesis. Structural transformations between these dodecavanadate species and alkoxopolyoxovanadates are also described.
机译:近年来,已开发出许多用于杂多氧杂钒酸盐和低聚多氧杂钒酸盐的合成方法。我们概述了用于生产新的聚氧钒酸盐物种的各种方法,包括四钒酸盐,六钒酸盐,十钒酸盐和十二钒酸盐的杂金属结合配合物。特别是,探索了三种类型的合成路线。基于(i)偏钒酸盐物种与过渡金属阳离子的配位,(ii)还原型多氧钒酸盐的氧化和(iii)模板合成。偏钒酸盐物种可以作为无机大环配体与金属阳离子配位,形成杂多氧钒酸盐。也已经报道了将杂金属阳离子掺入十钒酸盐中。还原的聚氧杂钒酸盐的氧化反应为形成凹状聚氧杂钒酸盐提供了一条新途径,可以用作无机主体分子。十二烷酸酯是具有特殊结构意义的碗型分子;可以通过模板合成将氯离子引入碗中。还描述了这些十二烷酸酯和烷氧基聚氧钒酸盐之间的结构转化。

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