Artículo
Mean field approach applied to surface deposition on a modified electrode
Pasinetti, Pedro Marcelo
; Paz Zanini, Veronica Irene
; Ramirez Pastor, Antonio Jose
; Pinto, Oscar Alejandro
Fecha de publicación:
09/2021
Editorial:
Royal Society of Chemistry
Revista:
Physical Chemistry Chemical Physics
ISSN:
1463-9076
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
In this work we study the deposition phenomena on a modified electrode in the framework of the mean field theory. The electrode surface is modified by irreversible deposition of impurities which can block a fraction of the adsorption sites. Then, an electroactive species is allowed to adsorb on the accessible sites, transferring electric charge and generating a current that can be calculated and measured. Nearest-neighbor lateral interactions are considered both between electroactive particles and between particles and impurities. A modified Bragg-Williams theoretical approach considers both the blocking effects of impurities and the lateral interactions, through different concentrations of impurities and particles. The analysis is based on the study of adsorption isotherms and voltammograms, considering different interaction energies and impurity concentrations. The potentialities and limitations of the analytical approximation are discussed by comparing theoretical predictions with Monte Carlo simulations and experimental measurements in which artificial clay represents the impurity and a [Fe(CN)6]4redox probe is the species that transfers the charge.
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Articulos(INBIONATEC)
Articulos de INSTITUTO DE BIONANOTECNOLOGIA DEL NOA
Articulos de INSTITUTO DE BIONANOTECNOLOGIA DEL NOA
Articulos(INFAP)
Articulos de INST. DE FISICA APLICADA "DR. JORGE ANDRES ZGRABLICH"
Articulos de INST. DE FISICA APLICADA "DR. JORGE ANDRES ZGRABLICH"
Citación
Pasinetti, Pedro Marcelo; Paz Zanini, Veronica Irene; Ramirez Pastor, Antonio Jose; Pinto, Oscar Alejandro; Mean field approach applied to surface deposition on a modified electrode; Royal Society of Chemistry; Physical Chemistry Chemical Physics; 23; 36; 9-2021; 20247-20254
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