Numerical simulation of partially blocked electrodes under cyclic voltammetry conditions: influence of the block unit geometry on the global electrochemical properties

A general mathematical model for partially blocked electrodes (PBEs) taking into account the finite volume and height of the blocking units has been developed and solved using numerical simulation. The electrochemical behaviour of this model was studied and compared to the common 'flat block�...

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Main Authors: Chevallier, F, Davies, T, Klymenko, O, Jiang, L, Jones, T, Compton, R
Format: Journal article
Language:English
Published: 2005
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author Chevallier, F
Davies, T
Klymenko, O
Jiang, L
Jones, T
Compton, R
author_facet Chevallier, F
Davies, T
Klymenko, O
Jiang, L
Jones, T
Compton, R
author_sort Chevallier, F
collection OXFORD
description A general mathematical model for partially blocked electrodes (PBEs) taking into account the finite volume and height of the blocking units has been developed and solved using numerical simulation. The electrochemical behaviour of this model was studied and compared to the common 'flat block' approach in which the blocks are assumed to have zero height to highlight the main differences and explain their origins. © 2004 Elsevier B.V. All rights reserved.
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spelling oxford-uuid:f7b1aee5-b5ed-4ee7-a3af-eeff5d810dca2022-03-27T12:44:37ZNumerical simulation of partially blocked electrodes under cyclic voltammetry conditions: influence of the block unit geometry on the global electrochemical propertiesJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:f7b1aee5-b5ed-4ee7-a3af-eeff5d810dcaEnglishSymplectic Elements at Oxford2005Chevallier, FDavies, TKlymenko, OJiang, LJones, TCompton, RA general mathematical model for partially blocked electrodes (PBEs) taking into account the finite volume and height of the blocking units has been developed and solved using numerical simulation. The electrochemical behaviour of this model was studied and compared to the common 'flat block' approach in which the blocks are assumed to have zero height to highlight the main differences and explain their origins. © 2004 Elsevier B.V. All rights reserved.
spellingShingle Chevallier, F
Davies, T
Klymenko, O
Jiang, L
Jones, T
Compton, R
Numerical simulation of partially blocked electrodes under cyclic voltammetry conditions: influence of the block unit geometry on the global electrochemical properties
title Numerical simulation of partially blocked electrodes under cyclic voltammetry conditions: influence of the block unit geometry on the global electrochemical properties
title_full Numerical simulation of partially blocked electrodes under cyclic voltammetry conditions: influence of the block unit geometry on the global electrochemical properties
title_fullStr Numerical simulation of partially blocked electrodes under cyclic voltammetry conditions: influence of the block unit geometry on the global electrochemical properties
title_full_unstemmed Numerical simulation of partially blocked electrodes under cyclic voltammetry conditions: influence of the block unit geometry on the global electrochemical properties
title_short Numerical simulation of partially blocked electrodes under cyclic voltammetry conditions: influence of the block unit geometry on the global electrochemical properties
title_sort numerical simulation of partially blocked electrodes under cyclic voltammetry conditions influence of the block unit geometry on the global electrochemical properties
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