首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Inner-sphere cluster formation by [Ru(NH3)(5)H2O](3+) or [Os(NH3)(5)H2O](3+) in combination with [M(CN)(6)](4-) (M = Fe, Ru, or Os)
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Inner-sphere cluster formation by [Ru(NH3)(5)H2O](3+) or [Os(NH3)(5)H2O](3+) in combination with [M(CN)(6)](4-) (M = Fe, Ru, or Os)

机译:[Ru(NH3)(5)H2O](3+)或[Os(NH3)(5)H2O](3+)与[M(CN)(6)](4- )(M = Fe,Ru或Os)

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When the cations [M'(NH3)(5)H2O](3+) or [M'(NH3)(5)H2O](2+) (M' = Ru, Os) are added in excess of the co-reactants [M(CN)(6)](4-) (M = Fe, Ru, Os), inner-sphere binding ends abruptly at the 4:1 ratio. The [M(CN)(6)](4-) --> [M'(NH3)(5)](3+) charge transfer (CT) absorption shifts slightly to higher energy as the cations accumulate in the cluster, and there is a progressive decrease in intensity per additional oscillator introduced. The absorption bands and the electrochemical properties reveal the presence of isomeric forms in complexes of order 2 and above. The successive stages of reduction of [Ru(NH3)(5))](3+) take place in a narrow range of potentials, despite the close proximity of the peripheral cations in a cluster. Clusters containing Ru(II) and Ru(m) show also the [Ru(NH3)(5)](2+) --> [Ru(NH3)(5)](3+) CT transition. While [Ru(NH3)(5)](2+) has little effect on M(II)--> M'(III) CT absorption, acculation of M'(III) in a cluster containing the M'(II) --> M'(III) oscillator, despite an increase in the number of these oscillators, leads to no significant increase in the intensity. The energy of the [RU(NH3)(5)](2+) --> [Ru(NH3)(5)](3+) transition is 1500 cm(-1) greater when M = Ru than when it is Fe or Os, for which it appears at 8000 cm(-1). This difference is attributed to rapid isomerization of the (RuCNRuIII)-C-II linkage causing a shift to higher energy. This interpretation is in accord with the deep seated degradation of the clusters which occurs whenever [Ru(NH3)(5)](2+)) is present (complete loss of the M'(II) --> M'(III) and M(II) --> M'(III) oscillators), which is most rapid when M=Ru(II). [References: 18]
机译:当阳离子[M'(NH3)(5)H2O](3+)或[M'(NH3)(5)H2O](2+)(M'= Ru,Os)添加时,过量反应物[M(CN)(6)](4-)(M = Fe,Ru,Os),内球结合突然以4:1的比例终止。 [M(CN)(6)](4-)-> [M'(NH3)(5)](3+)电荷转移(CT)吸收随着阳离子在团簇中的积累而向较高能量转移,并且每引入一个额外的振荡器,强度就会逐渐降低。吸收带和电化学性质揭示了2级以上的络合物中异构体形式的存在。尽管簇中外围阳离子非常接近,但[Ru(NH3)(5))](3+)还原的连续阶段发生在狭窄的电位范围内。包含Ru(II)和Ru(m)的簇也显示[Ru(NH3)(5)](2+)-> [Ru(NH3)(5)](3+)CT跃迁。尽管[Ru(NH3)(5)](2+)对M(II)-> M'(III)CT吸收几乎没有影响,但在包含M'(II)的簇中积累了M'(III) -> M'(III)振荡器,尽管这些振荡器的数量增加了,但强度并未显着增加。当M = Ru时,[RU(NH3)(5)](2+)-> [Ru(NH3)(5)](3+)跃迁的能量比当M = Ru时大1500 cm(-1) Fe或Os,出现在8000 cm(-1)。该差异归因于(RuCNRuIII)-C-II键的快速异构化,导致向更高能量的转移。这种解释与出现[Ru(NH3)(5)](2+))时发生的簇的深层降解一致(M'(II)-> M'(III)完全损失)和M(II)-> M'(III)振荡器),当M = Ru(II)时最快。 [参考:18]

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