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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >VANADIUM COMPLEXES IN A LEWIS BASIC ROOM-TEMPERATURE 1-ETHYL-3-METHYL-1H-IMIDAZOLIUM CHLORIDE ALUMINUM CHLORIDE MOLTEN SALT
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VANADIUM COMPLEXES IN A LEWIS BASIC ROOM-TEMPERATURE 1-ETHYL-3-METHYL-1H-IMIDAZOLIUM CHLORIDE ALUMINUM CHLORIDE MOLTEN SALT

机译:路易斯基本室温下的钒络合物1-乙基-3-甲基-1H-咪唑氯化铝氯化铝熔融盐

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摘要

Complexes of VCl3 and VCl4 have been formed in a Lewis basic room-temperature molten salt consisting of 1-ethyl-3-methyl-1H-imidazolium chloride and aluminum chloride. Electrochemical and spectroscopic studies show that 3 equiv of chloride can be added to VCl3 to form higher order chloride complexes. Each vanadium(III) complex can be reversibly oxidized to a corresponding vanadium(IV) complex. The potentials fur the couples VCl4- <-> VCl4 + e(-), VCl52- <-> VCl5- + e(-), and VCl63- <-> VCl62- + e(-) occur at 1.33, 1.23, and 1.00 V, respec tively, measured versus a reference electrode consisting of an aluminum wire in a 0.6 mole fraction AlCl3 melt. Although higher order chloride complexes of other transition metals have been reported in these welts, this is the first metal for which the stepwise addition of chloride accompanied by reversible electrochemistry for each species has been demonstrated. This also shows that molten salts are useful for stabilizing complexes which may be hydrolyzed by the residual water sometimes present in organic solvents. [References: 20]
机译:在由1-乙基-3-甲基-1H-咪唑鎓氯化物和氯化铝组成的路易斯碱性室温熔融盐中形成了VCl3和VCl4的配合物。电化学和光谱研究表明,可以将3当量的氯化物添加到VCl3中,以形成更高阶的氯化物络合物。每个钒(III)络合物可以可逆地氧化为相应的钒(IV)络合物。 VCl4-<-> VCl4 + e(-),VCl52-<-> VCl5- + e(-)和VCl63-<-> VCl62- + e(-)对的电势出现在1.33、1.23和相对于由铝线组成的参比电极,在0.6摩尔分数的AlCl3熔体中测得的电压为1.00V。尽管已在这些贴边中报道了其他过渡金属的更高阶氯化物络合物,但已证明这是第一种金属,其逐步逐步加入氯化物并伴随着可逆电化学作用,对每种物质而言。这也表明熔融盐可用于稳定复合物,该复合物可能会被有时存在于有机溶剂中的残留水水解。 [参考:20]

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