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Cyclic voltammetry Nicholson analysis

Early studies of ET dynamics at externally biased interfaces were based on conventional cyclic voltammetry employing four-electrode potentiostats [62,67 70,79]. The formal pseudo-first-order electron-transfer rate constants [ket(cms )] were measured on the basis of the Nicholson method [99] and convolution potential sweep voltammetry [79,100] in the presence of an excess of one of the reactant species. The constant composition approximation allows expression of the ET rate constant with the same units as in heterogeneous reaction on solid electrodes. However, any comparison with the expression described in Section II.B requires the transformation to bimolecular units, i.e., M cms . Values of of the order of 1-2 x lO cms (0.05 to O.IM cms ) were reported for Fe(CN)g in the aqueous phase and the redox species Lu(PC)2, Sn(PC)2, TCNQ, and RuTPP(Py)2 in DCE [62,70]. Despite the fact that large potential perturbations across the interface introduce interferences in kinetic analysis [101], these early estimations allowed some preliminary comparisons to established ET models in heterogeneous media. [Pg.203]

Refs. [i] Nicholson RS, Shain I (1964) Anal Chem 36 706 [ii] Randles JEB (1948) Trans Faraday Soc 44 327 [iii] Sevcik A (1948) Collect Czech Chem Commun 13 349 [iv] Bard AJ, Faulkner LR (2001) Electrochemical methods. 2nd edn. Wiley, New York [v] Marken F, NeudeckA, Bond AM (2000) Cyclic voltammetry. In ScholzF (ed) Electroanalytical methods. Springer, Berlin, p 51fi [vi] Gosser DK (1993) Cyclic voltammetry simulation and analysis of reaction mechanisms. VCH, New York... [Pg.134]

By using cyclic voltammetry, Schiffrin and coworkers [26, 186, 187, 189] studied electron transfer across the water-1,2-dichloroethane interface between the redox couple FefCNls /Fe(CN)6 in water, and lutetium(III) [186] and tin(IV) [26, 187] diphthalocyanines and bis(pyridine)-me50-tetraphenylporphyrinato-iron(II) or ru-thenium(III) [189] in the organic solvent. An essential advantage of these systems is that none of the reactants or products can cross the interface and interfere with the electron transfer reaction, which could be clearly demonstrated. Owing to a much higher concentration of the aqueous redox couple, the pseudo-first order electron transfer reactions could be analyzed with the help of the Nicholson-Shain theory. However, though they have all appeared to be quasireversible, kinetic analysis was restricted to an evaluation of the apparent standard rate constant o. which was found to be of the order of 10 cm s [186, 189]. Marcus [199] has derived a relationship between the pseudo-first-order rate constant for the reaction (8) and the rate... [Pg.353]


See other pages where Cyclic voltammetry Nicholson analysis is mentioned: [Pg.58]    [Pg.51]   
See also in sourсe #XX -- [ Pg.105 ]




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