首页> 外文期刊>European journal of inorganic chemistry >Dinuclear Manganese and Cobalt Complexes with Cyclic Polyoxovanadate Ligands: Synthesis and Characterization of [Mn2V10O30]6– and [Co2(H2O)2V10O30]6–
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Dinuclear Manganese and Cobalt Complexes with Cyclic Polyoxovanadate Ligands: Synthesis and Characterization of [Mn2V10O30]6– and [Co2(H2O)2V10O30]6–

机译:环状多氧钒酸盐配体的双核锰和钴配合物:[Mn2V10O30] 6-和[Co2(H2O)2V10O30] 6-的合成和表征

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摘要

An all-inorganic complex, [Mn2{(VO3)5}2]6– (1), was synthesized, and the structure determination reveals a dinuclear manganese complex coordinated by two cyclic pentavanadate ligands. The cyclic pentavanadate units sandwich the edge-sharing octahedral dimanganese core through coordination of the oxido group of the pentavanadate. A dinuclear cobalt complex with a cyclic decavanadate, [Co2(OH2)2- (VO3)10]6– (2), was also synthesized. The structure analysis reveals a dinuclear cobalt complex with a macrocyclic decavanadate, which is composed of 10 VO4 units joined by the vertex sharings. The CoO6 octahedrons are edge-shared, with each cobalt octahedron coordinated to five oxido groups from the decavanadate. The remaining site is occupied by water. The coordinated water molecules are supported with hydrogen bonds in two directions. Complex 2 in acetonitrile shows no reactivity with dioxygen even at low temperature, and the cyclic voltammogram of 2 shows no redox chemistry in acetonitrile. Complex 2 exhibits chromism by water exposure both in the solid state and in acetonitrile. Complex 2 is green–yellow in color, and the addition of water causes the complex to turn brown. After heating the sample, it returns to its original color in a reversible manner. The EXAFS data in acetonitrile is also reported and is consistent with the solid- state structure.
机译:合成了一种全无机复合物,[Mn2 {(VO3)5} 2] 6-(1),结构测定表明,它是由两个环状五钒酸盐配体配位的双核锰配合物。环状五钒酸盐单元通过五钒酸盐的氧化基团的配位将边缘共享的八面体二锰芯夹在中间。还合成了具有环十钒酸盐的双核钴配合物[Co2(OH2)2-(VO3)10] 6-(2)。结构分析揭示了具有大环十钒酸盐的双核钴配合物,其由10个VO4单元组成,这些单元通过顶点共享连接在一起。 CoO6八面体是边缘共享的,每个钴八面体与十钒酸盐中的五个氧化基团配位。其余的场地被水占据。配位的水分子在两个方向上被氢键支撑。乙腈中的络合物2甚至在低温下也不会与双氧反应,而2的循环伏安图显示乙腈中没有氧化还原化学反应。络合物2通过在固态和乙腈中都暴露于水而表现出变色现象。复合物2为绿色-黄色,加水会使复合物变成棕色。加热样品后,样品以可逆的方式恢复为原始颜色。也报告了乙腈中的EXAFS数据,并且与固态结构一致。

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