Aizawa Mamoru | Department Of Chemistry Faculty Of Science And Engineering Sophia University
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Department Of Chemistry Faculty Of Science And Engineering Sophia University | 論文
- Behaviors of the One-Electron Reduction Species of {RuNO}^6-Type Complexes. An Oxygen-Transfer Reaction Occurs in the Nitrosyl Site of cis-[Ru(NO^・)X(bpy)_2]^ (X=ONO_2 for n=1, X=CH_3CN, H_2O for n=2)({RuNO}^7-Type) to Give an Identical Nitro Species^
- Reductions of {RuNO}^6-Type Nitrosyls. Characteristics of the Two-Electron Reduction Species Isolated as a Complex Having a Formally Negatively Charged μ-Nitrosyl({RuNO}^8-{RuNO}^8) and the One-Electron Reduction Species Generated Electrochamically({RuNO}
- Synthesis and Electrochemical Behavior of the Complex Having μ_2-Nitrosyl Moiety, as a Two-Electron Reduction Species of a {RuNO}^6-Type Nitrosyl,[{Ru(μ_2-NO)}_2(2,2-bipy)_4]^
- An Important Role of the One-Electron Reduction Nitrosyl Coordinated to Ruthenium. A Redox-Induced Oxygen Atom Transfer Reaction between the Nitrosyl and Adjacent Nitrite Moieties of {RuNO}^7-Type Nitrosyl Complex
- Some Mechanistic Evidence for an Oxygen Transfer Reaction Accompanied by the Redox-Induced Nitrito-Nitro Linkage Isomerization of Ruthenium Complex Having Nitrosyl, cis-[Ru(NO)(X)(bpy)_2]^(X=ONO, NO_2)