Electroanalysis in flowing systems - The propagation of depletion effects downstream of a channel micro-band electrode

Analytical and numerical methods are used to establish concentration distributions around channel microband electrodes both in isolation and as part of multi-electrode arrays. The importance of axial diffusion in addition to convection and diffusion normal to the electrode surface is stressed. In pa...

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Asıl Yazarlar: Bidwell, M, Alden, J, Compton, R
Materyal Türü: Journal article
Dil:English
Baskı/Yayın Bilgisi: 1997
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author Bidwell, M
Alden, J
Compton, R
author_facet Bidwell, M
Alden, J
Compton, R
author_sort Bidwell, M
collection OXFORD
description Analytical and numerical methods are used to establish concentration distributions around channel microband electrodes both in isolation and as part of multi-electrode arrays. The importance of axial diffusion in addition to convection and diffusion normal to the electrode surface is stressed. In particular, downstream depletion effects are shown to occur over many electrode lengths, so that the diffusion fields of electrodes within arrays overlap and interfere. A simple analytical expression is derived to describe this depletion and permits the design of practical arrays in which electrodes operate essentially independently of each other.
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spelling oxford-uuid:d63ff408-cae1-40f8-9a6c-9a01fc92bbae2022-03-27T08:32:09ZElectroanalysis in flowing systems - The propagation of depletion effects downstream of a channel micro-band electrodeJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:d63ff408-cae1-40f8-9a6c-9a01fc92bbaeEnglishSymplectic Elements at Oxford1997Bidwell, MAlden, JCompton, RAnalytical and numerical methods are used to establish concentration distributions around channel microband electrodes both in isolation and as part of multi-electrode arrays. The importance of axial diffusion in addition to convection and diffusion normal to the electrode surface is stressed. In particular, downstream depletion effects are shown to occur over many electrode lengths, so that the diffusion fields of electrodes within arrays overlap and interfere. A simple analytical expression is derived to describe this depletion and permits the design of practical arrays in which electrodes operate essentially independently of each other.
spellingShingle Bidwell, M
Alden, J
Compton, R
Electroanalysis in flowing systems - The propagation of depletion effects downstream of a channel micro-band electrode
title Electroanalysis in flowing systems - The propagation of depletion effects downstream of a channel micro-band electrode
title_full Electroanalysis in flowing systems - The propagation of depletion effects downstream of a channel micro-band electrode
title_fullStr Electroanalysis in flowing systems - The propagation of depletion effects downstream of a channel micro-band electrode
title_full_unstemmed Electroanalysis in flowing systems - The propagation of depletion effects downstream of a channel micro-band electrode
title_short Electroanalysis in flowing systems - The propagation of depletion effects downstream of a channel micro-band electrode
title_sort electroanalysis in flowing systems the propagation of depletion effects downstream of a channel micro band electrode
work_keys_str_mv AT bidwellm electroanalysisinflowingsystemsthepropagationofdepletioneffectsdownstreamofachannelmicrobandelectrode
AT aldenj electroanalysisinflowingsystemsthepropagationofdepletioneffectsdownstreamofachannelmicrobandelectrode
AT comptonr electroanalysisinflowingsystemsthepropagationofdepletioneffectsdownstreamofachannelmicrobandelectrode