M. Zvagulis
University of Auckland
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Journal of The Chemical Society-dalton Transactions | 1986
Graham A. Bowmaker; Peter D. W. Boyd; Graeme K. Campbell; M. Zvagulis
The redox properties of nickel(II) and palladium(II) complexes of the type [M(M′S4)n(R2NCS2)2 –n]n–(n= 0–2, M = Ni or Pd, M′= Mo or W) have been studied using d.c. and a.c. cyclic voltammetry at a platinum electrode in dichloromethane solution. The series of complexes show initial reversible or quasi-reversible one-electron reduction to give species containing a single unpaired electron. E.s.r. spectra have been used to identify the species produced after one-electron reduction. In the case of palladium, the reduction potential increases smoothly with increasing n whilst the unpaired electron is increasingly delocalised from the central metal ion with decreasing g anisotropy. In contrast, the reduction potential of the nickel complexes increases sharply from n= 0 to 1 with a corresponding increase in the g anisotropy. The reduction potential increases again for n= 2, however the e.s.r. spectrum shows an unusual ‘reversal’ of g anisotropy (g‖ g⊥). It is suggested that in the case of n= 1 or 2 the unpaired electron is now occupying a molecular orbital composed of the low-lying molybdenum (or tungsten)d orbitals. This is supported by scattered wave Xα calculations of the electronic structure of the model complexes [Ni(H2NCS2)2], [Ni(MoS4)(H2NCS2)]– and [Ni(MoS4)2]2– and their oneelectron reduction products.
Inorganic Chemistry | 1985
Vickie McKee; M. Zvagulis; Christopher A. Reed
Inorganic Chemistry | 1981
C. J. L. Lock; M. Zvagulis
Inorganic Chemistry | 1989
James K. McCusker; M. Zvagulis; H. G. Drickamer; David N. Hendrickson
Inorganic Chemistry | 1985
Graham A. Bowmaker; Peter D. W. Boyd; M. Zvagulis; Kingsley J. Cavell; Anthony F. Masters
Canadian Journal of Chemistry | 1981
Helen Elaine Howard-Lock; C. J. L. Lock; Graham Turner; M. Zvagulis
ChemInform | 1979
Bernhard Lippert; C. J. L. Lock; Barnett Rosenberg; M. Zvagulis
ChemInform | 1978
Bernhard Lippert; J. K. Barton; H. N. Rabinowitz; D. J. Szalda; S. J. Lippard; C. J. L. Lock; Barnett Rosenberg; M. Zvagulis; R. Faggiani; Ronald J. Gillespie; J. David Tyrer
Inorganic Chemistry | 1989
James K. McCusker; M. Zvagulis; H. G. Drickamer; David N. Hendrickson
ChemInform | 1986
Graham A. Bowmaker; Peter D. W. Boyd; Gk Campbell; M. Zvagulis