Cyclic voltammetry in the absence of excess supporting electrolyte offers extra kinetic and mechanistic insights: comproportionation of anthraquinone and the anthraquinone dianion in acetonitrile.

Less is more: The use of voltammetry in the total or partial absence of supporting electrolyte provides kinetic and mechanistic information beyond that available from familiar fully supported voltammetry. For example, unsupported voltammetry demonstrates that the comproportionation of anthraquinone...

पूर्ण विवरण

ग्रंथसूची विवरण
मुख्य लेखकों: Belding, SR, Limon-Petersen, J, Dickinson, E, Compton, R
स्वरूप: Journal article
भाषा:English
प्रकाशित: 2010
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author Belding, SR
Limon-Petersen, J
Dickinson, E
Compton, R
author_facet Belding, SR
Limon-Petersen, J
Dickinson, E
Compton, R
author_sort Belding, SR
collection OXFORD
description Less is more: The use of voltammetry in the total or partial absence of supporting electrolyte provides kinetic and mechanistic information beyond that available from familiar fully supported voltammetry. For example, unsupported voltammetry demonstrates that the comproportionation of anthraquinone and anthraquinone dianion proceeds at a diffusionally controlled rate in acetonitrile, a result which could not be determined from "diffusion- only" voltammetry. Copyright © 2010 WILEY-VCH Verlag GmbH and Co. KGaA, Weinheim.
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spelling oxford-uuid:7b07d804-f41f-4fab-bacd-4b50bfdbb24b2022-03-26T20:48:03ZCyclic voltammetry in the absence of excess supporting electrolyte offers extra kinetic and mechanistic insights: comproportionation of anthraquinone and the anthraquinone dianion in acetonitrile.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:7b07d804-f41f-4fab-bacd-4b50bfdbb24bEnglishSymplectic Elements at Oxford2010Belding, SRLimon-Petersen, JDickinson, ECompton, RLess is more: The use of voltammetry in the total or partial absence of supporting electrolyte provides kinetic and mechanistic information beyond that available from familiar fully supported voltammetry. For example, unsupported voltammetry demonstrates that the comproportionation of anthraquinone and anthraquinone dianion proceeds at a diffusionally controlled rate in acetonitrile, a result which could not be determined from "diffusion- only" voltammetry. Copyright © 2010 WILEY-VCH Verlag GmbH and Co. KGaA, Weinheim.
spellingShingle Belding, SR
Limon-Petersen, J
Dickinson, E
Compton, R
Cyclic voltammetry in the absence of excess supporting electrolyte offers extra kinetic and mechanistic insights: comproportionation of anthraquinone and the anthraquinone dianion in acetonitrile.
title Cyclic voltammetry in the absence of excess supporting electrolyte offers extra kinetic and mechanistic insights: comproportionation of anthraquinone and the anthraquinone dianion in acetonitrile.
title_full Cyclic voltammetry in the absence of excess supporting electrolyte offers extra kinetic and mechanistic insights: comproportionation of anthraquinone and the anthraquinone dianion in acetonitrile.
title_fullStr Cyclic voltammetry in the absence of excess supporting electrolyte offers extra kinetic and mechanistic insights: comproportionation of anthraquinone and the anthraquinone dianion in acetonitrile.
title_full_unstemmed Cyclic voltammetry in the absence of excess supporting electrolyte offers extra kinetic and mechanistic insights: comproportionation of anthraquinone and the anthraquinone dianion in acetonitrile.
title_short Cyclic voltammetry in the absence of excess supporting electrolyte offers extra kinetic and mechanistic insights: comproportionation of anthraquinone and the anthraquinone dianion in acetonitrile.
title_sort cyclic voltammetry in the absence of excess supporting electrolyte offers extra kinetic and mechanistic insights comproportionation of anthraquinone and the anthraquinone dianion in acetonitrile
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