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An Ionic Liquid Based Single Step Room Temperature Route for the Synthesis of Molybdenum Cluster Compounds
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2011
Year
Materials ScienceInorganic ChemistryIonic LiquidCrystal StructureCl 14EngineeringSolid-state IonicIonic ConductorMolybdenum Cluster CompoundsCluster ChemistryChemistryMolybdenum ClusterCrystallographyCrystal Structure DesignInorganic Synthesis
Abstract A soft and convenient single step route is developed to synthesize molybdenum cluster compounds using an ionic liquid as reaction medium. Bi[Mo 5 Cl 13 ]Cl and [BiCl][Mo 6 Cl 14 ] were isolated from the ionic liquid [BMIM]Cl/AlCl 3 ([BMIM] + : 1‐ n ‐butyl‐3‐methylimidazolium) and characterized. Black, cubic crystals of Bi[Mo 5 Cl 13 ]Cl are obtained at room temperature by the reaction of bismuth, BiCl 3 , and MoCl 5 in Lewis‐acidic ionic liquid [BMIM]Cl/AlCl 3 . Bi[Mo 5 Cl 13 ]Cl crystallizes in the cubic space group Pn $\bar{3}$ with a = 1291.6(3) pm. In the [Mo 5 Cl 13 ] 2– cluster, the molybdenum atoms form a square pyramid with Mo–Mo bond lengths 258.9(2) pm and 259.5(2) pm. The structure is a defect variant of the Pb[Mo 6 Cl 14 ] type; in statistical distribution one of the molybdenum atoms is missing in the cluster core. The bismuth(III) cations, which are in octahedral coordination by the apical chloride ions of the clusters, connect the cluster anions into a three dimensional network. Light red crystals of monoclinic [BiCl][Mo 6 Cl 14 ] were obtained by the oxidation of bismuth with MoCl 5 in [BMIM]Cl/AlCl 3 . The structure determination is in excellent agreement with literature data of crystals obtained by high temperature syntheses.
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