Cyclic voltammetry modeling of proton transport effects on redox charge storage in conductive materials: application to a TiO 2 mesoporous film

Cyclic voltammetry is a particularly useful tool for characterizing charge accumulation in conductive materials. A simple model is presented to evaluate proton transport effects on charge storage in conductive materials associated with a redox process coupled with proton insertion in the bulk materi...

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Veröffentlicht in:Physical chemistry chemical physics : PCCP 2017-07, Vol.19 (27), p.17944-17951
Hauptverfasser: Kim, Y S, Balland, V, Limoges, B, Costentin, C
Format: Artikel
Sprache:eng
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Zusammenfassung:Cyclic voltammetry is a particularly useful tool for characterizing charge accumulation in conductive materials. A simple model is presented to evaluate proton transport effects on charge storage in conductive materials associated with a redox process coupled with proton insertion in the bulk material from an aqueous buffered solution, a situation frequently encountered in metal oxide materials. The interplay between proton transport inside and outside the materials is described using a formulation of the problem through introduction of dimensionless variables that allows defining the minimum number of parameters governing the cyclic voltammetry response with consideration of a simple description of the system geometry. This approach is illustrated by analysis of proton insertion in a mesoporous TiO film.
ISSN:1463-9076
1463-9084
DOI:10.1039/c7cp02810e