Electrochemical studies of the oxidation and reduction of dicobalta-superphane complexes

The electrochemical oxidation of a series of dicobalta-superphanes has been studied. Complexes in which the redox centers are connected by four propano-bridges display two one-electron oxidations, at least one of them being reversible, at potentials close to that of the ferrocene oxidation. The pote...

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Main Authors: Trupia, Sabrina (Author) , Claßen, Jörg (Author) , Gleiter, Rolf (Author) , Geiger, William E. (Author)
Format: Article (Journal)
Language:English
Published: 3 February 2011
In: Inorganica chimica acta
Year: 2011, Volume: 374, Issue: 1, Pages: 88-93
ISSN:0020-1693
DOI:10.1016/j.ica.2011.01.092
Online Access:Verlag, lizenzpflichtig, Volltext: https://doi.org/10.1016/j.ica.2011.01.092
Verlag, lizenzpflichtig, Volltext: https://www.sciencedirect.com/science/article/pii/S0020169311001241
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Author Notes:Sabrina Trupia, Jörg Classen, Rolf Gleiter, William E. Geiger
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Summary:The electrochemical oxidation of a series of dicobalta-superphanes has been studied. Complexes in which the redox centers are connected by four propano-bridges display two one-electron oxidations, at least one of them being reversible, at potentials close to that of the ferrocene oxidation. The potential separation of the successive anodic processes is suggestive of strong transannular electronic interactions between the two redox sites. Two complexes (6 and 7) having one or both of their cyclopentadienyl caps substituted with a methyl ester, and containing two ethano-bridges and two 1,3-disilapropano-bridges, have been similarly studied and the IR spectra of their oxidation products recorded. The monocation 7+ displays two IR-active νCO bands, indicative of trapped valency, but both bands are shifted from the energies observed for the fully oxidized or reduced redox sites. Combined with the large ΔE1/2 value for separation of the two one-electron oxidations of 7, the data are taken to denote a spin-localized but charge-delocalized model of the mixed valence state. Approximately 20% of the positive charge is transferred to the “unoxidized” side of the monocation 7+. Electrochemical data are also presented on the reductions of cobalt and dicobalta-superphanes having cyclobutadienone moieties linked by propano-bridges.
Item Description:Gesehen am 17.11.2022
Dedicated to Prof. Wolfgang Kaim, in appreciation of his outstanding contributions to the understanding of redox properties of transition metal and organometallic complexes
Physical Description:Online Resource
ISSN:0020-1693
DOI:10.1016/j.ica.2011.01.092