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首页> 外文期刊>Journal of the Chemical Society, Dalton Transactions. Inorganic Chemistry >Unusual pathways for the reaction between [MCl2(Me2SO)(4)] (M = Os, Ru) and hydrazine dihydrochloride: deoxygenation of sulfoxides vs. coordination of hydrazinium [Review]
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Unusual pathways for the reaction between [MCl2(Me2SO)(4)] (M = Os, Ru) and hydrazine dihydrochloride: deoxygenation of sulfoxides vs. coordination of hydrazinium [Review]

机译:[MCl2(Me2SO)(4)](M = Os,Ru)与二肼肼之间反应的不寻常途径:亚砜的脱氧与肼的配位[综述]

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摘要

Reaction of trans-[OsCl2(Me2SO)(4)] 1 with excess N2H4. 2HCl leads to the osmium(III) compound mer-[OsCl3(NH3)(2)(Me2S)] 2 in the course of concerted reactions, i.e. oxidation of the metal, deoxygenation of the sulfoxide, disproportionation of hydrazine and substitution by NH3. In contrast, interaction of cis-[RuCl2(Me2SO)(4)] cis-3 with hydrazine dihydrochloride brings about easy substitution (without redox conversion) leading to mer-[RuCl3(N2H5)(Me2SO)(2)] 4 which is a rare example of a hydrazinium complex. X-Ray single-crystal diffraction analyses were performed on 1, 2 and 4. In 4, one Ru-S bond is unusually short due to the enhanced pi bonding contribution as a result of an intramolecular H-bond between the Me2SO and the cis N2H5+ group. The complexes show anodic oxidations and 4, that in aqueous medium undergoes spontaneous dehydrochlorination, exhibits by controlled potential electrolysis a multi-electron oxidation process with anodically-induced H+ loss, oxidation of the hydrazine ligand to N-2 and N-oxides, and of Me2SO to SO2. The anodic waves of Me2SO or H2O solutions of cis-3 were assigned to trans-[RuCl2(Me2SO-S)(4)] trans-3 and [RuCl(H2O)(2)(Me2SO-S)(3)](+), respectively. The oxidation potential values were interpreted on the basis of redox potential-structure relationships and the Lever electrochemical parameter E-L was tentatively estimated for both S- and O-coordinated Me2SO and for the hydrazinium ligand, showing that Me2SO-S in our complexes behaves as a significant pi-electron acceptor and N2H5+ as a rather weak net electron donor, and applied to predict the oxidation potential of some Ru and Os complexes. [References: 116]
机译:反式[OsCl2(Me2SO)(4)] 1与过量的N2H4反应。 2HCl在协同反应的过程中,即金属的氧化,亚砜的脱氧,肼的歧化和被NH3取代,导致生成((III)化合物mer- [OsCl3(NH3)(2)(Me2S)] 2 2。相反,顺式-[RuCl2(Me2SO)(4)] cis-3与二盐酸肼的相互作用易于取代(无氧化还原转化),从而导致mer- [RuCl3(N2H5)(Me2SO)(2)] 4为肼配合物的罕见例子。在1、2和4上进行了X射线单晶衍射分析。在4中,由于Me2SO和顺式之间的分子内H键增强了pi键的贡献,一个Ru-S键异常短N2H5 +组。该配合物显示出阳极氧化,而在水介质中进行自发的脱氯化氢则显示出4,通过控制电位电解显示出多电子氧化过程,该过程具有阳极引起的H +损失,肼配体氧化为N-2和N-氧化物,以及从Me2SO到SO2。顺式3的Me2SO或H2O溶液的阳极波被指定为反式[RuCl2(Me2SO-S)(4)] trans-3和[RuCl(H2O)(2)(Me2SO-S)(3)]( +)。根据氧化还原电势-结构关系解释了氧化电势值,并初步估计了S和O配位的Me2SO和配体的杠杆电化学参数EL,表明我们络合物中的Me2SO-S表现为显着的pi电子受体和N2H5 +作为相当弱的净电子给体,并用于预测某些Ru和Os配合物的氧化势。 [参考:116]

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