Design, fabrication, characterisation and application of nanoelectrode arrays

This Letter highlights recent work carried out in our laboratory on methods of fabricating and characterising arrays of nanoelectrodes. We review the template fabrication of random arrays of nanoband electrodes on highly ordered graphite surfaces and on carbon nanotubes, acoustic methods of fabricat...

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Main Authors: Compton, R, Wildgoose, G, Rees, N, Streeter, I, Baron, R
Format: Journal article
Published: 2008
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author Compton, R
Wildgoose, G
Rees, N
Streeter, I
Baron, R
author_facet Compton, R
Wildgoose, G
Rees, N
Streeter, I
Baron, R
author_sort Compton, R
collection OXFORD
description This Letter highlights recent work carried out in our laboratory on methods of fabricating and characterising arrays of nanoelectrodes. We review the template fabrication of random arrays of nanoband electrodes on highly ordered graphite surfaces and on carbon nanotubes, acoustic methods of fabricating random arrays of metal nanoparticles on electrode surfaces, and numerical methods of simulating and modelling the electrochemical processes that occur at such arrays. Finally, examples of electroanalytical applications of nanoelectrode arrays are given, including multi-metal nanoparticle arrays for combinatorial electrochemistry. © 2008 Elsevier B.V. All rights reserved.
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spelling oxford-uuid:0a410bb8-f872-400d-a172-6773ce50ac262022-03-26T09:22:52ZDesign, fabrication, characterisation and application of nanoelectrode arraysJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:0a410bb8-f872-400d-a172-6773ce50ac26Symplectic Elements at Oxford2008Compton, RWildgoose, GRees, NStreeter, IBaron, RThis Letter highlights recent work carried out in our laboratory on methods of fabricating and characterising arrays of nanoelectrodes. We review the template fabrication of random arrays of nanoband electrodes on highly ordered graphite surfaces and on carbon nanotubes, acoustic methods of fabricating random arrays of metal nanoparticles on electrode surfaces, and numerical methods of simulating and modelling the electrochemical processes that occur at such arrays. Finally, examples of electroanalytical applications of nanoelectrode arrays are given, including multi-metal nanoparticle arrays for combinatorial electrochemistry. © 2008 Elsevier B.V. All rights reserved.
spellingShingle Compton, R
Wildgoose, G
Rees, N
Streeter, I
Baron, R
Design, fabrication, characterisation and application of nanoelectrode arrays
title Design, fabrication, characterisation and application of nanoelectrode arrays
title_full Design, fabrication, characterisation and application of nanoelectrode arrays
title_fullStr Design, fabrication, characterisation and application of nanoelectrode arrays
title_full_unstemmed Design, fabrication, characterisation and application of nanoelectrode arrays
title_short Design, fabrication, characterisation and application of nanoelectrode arrays
title_sort design fabrication characterisation and application of nanoelectrode arrays
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AT wildgooseg designfabricationcharacterisationandapplicationofnanoelectrodearrays
AT reesn designfabricationcharacterisationandapplicationofnanoelectrodearrays
AT streeteri designfabricationcharacterisationandapplicationofnanoelectrodearrays
AT baronr designfabricationcharacterisationandapplicationofnanoelectrodearrays