Fast electrochemical triple-interface processes at boron-doped diamond electrodes

Two important mechanisms for electron transfer processes at boron-doped diamond electrodes involving the oxidation of tetramethylphenylenediamine (TMPD) dissolved in aqueous solution and the oxidation of tetrahexylphenylenediamine (THPD) deposited in the form of microdroplets and immersed into aqueo...

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Հիմնական հեղինակներ: Marken, F, Compton, R, Goeting, C, Foord, J, Bull, S, Davies, S
Ձևաչափ: Journal article
Լեզու:English
Հրապարակվել է: 2001
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author Marken, F
Compton, R
Goeting, C
Foord, J
Bull, S
Davies, S
author_facet Marken, F
Compton, R
Goeting, C
Foord, J
Bull, S
Davies, S
author_sort Marken, F
collection OXFORD
description Two important mechanisms for electron transfer processes at boron-doped diamond electrodes involving the oxidation of tetramethylphenylenediamine (TMPD) dissolved in aqueous solution and the oxidation of tetrahexylphenylenediamine (THPD) deposited in the form of microdroplets and immersed into aqueous eletrolyte solution are reported. For TMPD, the first oxidation step in aqueous solution follows the equation: TMPDaqueous ⇌ TMPDaqueous+ + e- Remarkably slow heterogeneous kinetics at a H-plasma-treated boron-doped diamond electrode are observed, consistent with a process following a pathway more complex than outer-sphere electron transfer. At the same boron-doped diamond electrode surface a deposit of THPD undergoes facile oxidation following the equation: THPDorganic + SCNaqueous- ⇌ [THPD+SCN-]organic + e- This oxidation and re-reduction of the deposited liquid material occurs at the triple interface organic droplet diamond|aqueous electrolyte and is therefore an example of a facile high-current-density process at boron-doped diamond electrodes due to good electrical contact between the deposit and the diamond surface. © Springer-Verlag 2001.
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spelling oxford-uuid:4afb939d-3a48-41db-9ff5-43e6ad899f832022-03-26T15:40:49ZFast electrochemical triple-interface processes at boron-doped diamond electrodesJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:4afb939d-3a48-41db-9ff5-43e6ad899f83EnglishSymplectic Elements at Oxford2001Marken, FCompton, RGoeting, CFoord, JBull, SDavies, STwo important mechanisms for electron transfer processes at boron-doped diamond electrodes involving the oxidation of tetramethylphenylenediamine (TMPD) dissolved in aqueous solution and the oxidation of tetrahexylphenylenediamine (THPD) deposited in the form of microdroplets and immersed into aqueous eletrolyte solution are reported. For TMPD, the first oxidation step in aqueous solution follows the equation: TMPDaqueous ⇌ TMPDaqueous+ + e- Remarkably slow heterogeneous kinetics at a H-plasma-treated boron-doped diamond electrode are observed, consistent with a process following a pathway more complex than outer-sphere electron transfer. At the same boron-doped diamond electrode surface a deposit of THPD undergoes facile oxidation following the equation: THPDorganic + SCNaqueous- ⇌ [THPD+SCN-]organic + e- This oxidation and re-reduction of the deposited liquid material occurs at the triple interface organic droplet diamond|aqueous electrolyte and is therefore an example of a facile high-current-density process at boron-doped diamond electrodes due to good electrical contact between the deposit and the diamond surface. © Springer-Verlag 2001.
spellingShingle Marken, F
Compton, R
Goeting, C
Foord, J
Bull, S
Davies, S
Fast electrochemical triple-interface processes at boron-doped diamond electrodes
title Fast electrochemical triple-interface processes at boron-doped diamond electrodes
title_full Fast electrochemical triple-interface processes at boron-doped diamond electrodes
title_fullStr Fast electrochemical triple-interface processes at boron-doped diamond electrodes
title_full_unstemmed Fast electrochemical triple-interface processes at boron-doped diamond electrodes
title_short Fast electrochemical triple-interface processes at boron-doped diamond electrodes
title_sort fast electrochemical triple interface processes at boron doped diamond electrodes
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