Determination of Ferrocene Solubility by Normalized Chronoamperometry: An Evaluation of Experimental Constraints
Steven C. Petrovic, Rani H. Hammericksen
Abstract
Steven C. Petrovic, Rani H. Hammericksen
Abstract
The determination of ferrocene solubilities in aqueous ethanol mixtures by normalized chronoamperometry is described. Normalized chronoamperometry has been used to determine D without prior knowledge of n or C, although little information is available regarding the experimental limitations of this technique. A comparison of 1,1′-ferrocenedimethanol diffusion coefficients obtained using voltammetry and normalized chronoamperometry indicates that analyte concentrations less than 3 mM may lead to an underestimation of the diffusion coefficient for a single electron transfer process. The use of normalized chronoamperometry to measure diffusion coefficients in aqueous ethanol solutions was validated via the Stokes-Einstein equation.
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The determination of ferrocene solubilities in aqueous ethanol mixtures by normalized chronoamperometry is described. Normalized chronoamperometry has been used to determine D without prior knowledge of n or C, although little information is available regarding the experimental limitations of this technique. A comparison of 1,1′-ferrocenedimethanol diffusion coefficients obtained using voltammetry and normalized chronoamperometry indicates that analyte concentrations less than 3 mM may lead to an underestimation of the diffusion coefficient for a single electron transfer process. The use of normalized chronoamperometry to measure diffusion coefficients in aqueous ethanol solutions was validated via the Stokes-Einstein equation.
Key concepts: Chronoamperometry, Chemistry, Diffusion, Ferrocene, Analytical Chemistry (journal), Analyte, Aqueous solution, Solution of Schrödinger equation for a step potential