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In General, the Total Voltammetric Current from a Mixture of Redox-Active Substances will Not be the Sum of the Currents that Each Substance would Produce Independently at the Same Concentration as in the MixtureAt the potential range where both decamethylferrocene (dMeFc) and ferrocene (Fc) are oxidized with rates controlled by linear diffusion, electrogenerated Fc(+) radicals diffusing outwards from the electrode react quantitatively (K23 C=5.8 x 10(exp 8) with dMeFc diffusing towards the electrode and produce Fc and dMeFc. That reaction replaces dMeFc with Fc, whose diffusion coefficient is higher than that of dMeFc(+), and the total mass-transfer limited current from the mixture is increased by approximately 10%. Analogous observations are made when mass-transfer is controlled by convective-diffusion as in RDE voltammetry. Similar results have been obtained with another, and for all practical purposes randomly selected pair of redox-active substances, [Co(bipy)3](2+) and N - methylphenothiazine (MePTZ); reaction of MePTZ(+) with [Co(bipy)3](2+) replaces the latter with MePTZ, which diffuses faster and the current increases by approximately 20%. The experimental voltammograms have been simulated numerically and the role of (a) the rate constant of the homogeneous reaction; (b) the relative concentrations; and, (c) the diffusion coefficients of all species involved have been studied in detail. Importantly, it was also identified that within any given redox system the dependence of the mass-transfer limited current on the bulk concentrations of the redox-active species is expected to be non-linear. These findings are discussed in terms of their electroanalytical implications.
Document ID
20030112850
Acquisition Source
Glenn Research Center
Document Type
Preprint (Draft being sent to journal)
Authors
Leventis, Nicholas
(NASA Glenn Research Center Cleveland, OH, United States)
Oh, Woon Su
(Missouri Univ. Rolla, MO, United States)
Gao, Xue-Rong
(Missouri Univ. Rolla, MO, United States)
Rawashdeh, Abdel Monem M.
(Missouri Univ. Rolla, MO, United States)
Date Acquired
August 21, 2013
Publication Date
April 23, 2003
Subject Category
Inorganic, Organic And Physical Chemistry
Funding Number(s)
OTHER: 22-279-00-03-02
CONTRACT_GRANT: ACS-35154-AC5
Distribution Limits
Public
Copyright
Public Use Permitted.
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