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Reactivity of iron(II)-bound nitrosyl hydride (HNO, nitroxyl) in aqueous solution.
- Source :
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Journal of inorganic biochemistry [J Inorg Biochem] 2013 Jan; Vol. 118, pp. 108-14. Date of Electronic Publication: 2012 Oct 23. - Publication Year :
- 2013
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Abstract
- The reactivity of coordinated nitroxyl (HNO) has been explored with the [Fe(II)(CN)(5)HNO](3-) complex in aqueous medium, pH 6. We discuss essential biorelevant issues as the thermal and photochemical decompositions, the reactivity toward HNO dissociation, the electrochemical behavior, and the reactions with oxidizing and reducing agents. The spontaneous decomposition in the absence of light yielded a two-electron oxidized species, the nitroprusside anion, [Fe(II)(CN)(5)NO](2-), and a negligible quantity of N(2)O, with k(obs)≈5×10(-7)s(-1), at 25.0°C. The value of k(obs) represents an upper limit for HNO release, comparable to values reported for other structurally related L ligands in the [Fe(II)(CN)(5)L](n-) series. These results reveal that the FeN bond is strong, suggesting a significant σ-π interaction, as already postulated for other HNO-complexes. The [Fe(II)(CN)(5)HNO](3-) ion showed a quasi-reversible oxidation wave at 0.32 V (vs normal hydrogen electrode), corresponding to the [Fe(II)(CN)(5)HNO](3-)/[Fe(II)(CN)(5)NO](3-),H(+) redox couple. Hexacyanoferrate(III), methylviologen and the nitroprusside ion have been selected as potential oxidants. Only the first reactant achieved a complete oxidation process, initiated by a proton-coupled electron transfer reaction at the HNO ligand, with nitroprusside as a final oxidation product. Dithionite acted as a reductant of [Fe(II)(CN)(5)HNO](3-), in a 4-electron process, giving NH(3). The high stability of bound HNO may resemble the properties in related Fe(II) centers of redox active enzymes. The very minor release of N(2)O shows that the redox conversions may evolve without disruption of the FeN bonds, under competitive conditions with the dissociation of HNO.<br /> (Copyright © 2012 Elsevier Inc. All rights reserved.)
- Subjects :
- Coordination Complexes chemical synthesis
Dithionite chemistry
Electrochemistry
Ferricyanides chemistry
Ferrous Compounds chemical synthesis
Kinetics
Nitroprusside chemistry
Oxidants chemistry
Oxidation-Reduction
Paraquat chemistry
Photochemical Processes
Reducing Agents chemistry
Solutions
Spectrophotometry, Ultraviolet
Coordination Complexes chemistry
Ferrous Compounds chemistry
Nitrogen Oxides chemistry
Subjects
Details
- Language :
- English
- ISSN :
- 1873-3344
- Volume :
- 118
- Database :
- MEDLINE
- Journal :
- Journal of inorganic biochemistry
- Publication Type :
- Academic Journal
- Accession number :
- 23153690
- Full Text :
- https://doi.org/10.1016/j.jinorgbio.2012.10.009