MECHANISTIC STUDY OF PHOTOELECTROCHEMICAL REACTIONS - PHOTO-TRANSIENT CHARACTERIZATION OF CE PROCESSES

A channel electrode photo-transient experiment is described for the mechanistic characterization of photo-CE processes. This involves monitoring the transport limited current due to the discharge of a photo-generated electroactive species immediately following the stepwise application of light to th...

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Main Authors: Compton, R, Eklund, J, Rebbitt, T
Format: Journal article
Language:English
Published: 1995
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author Compton, R
Eklund, J
Rebbitt, T
author_facet Compton, R
Eklund, J
Rebbitt, T
author_sort Compton, R
collection OXFORD
description A channel electrode photo-transient experiment is described for the mechanistic characterization of photo-CE processes. This involves monitoring the transport limited current due to the discharge of a photo-generated electroactive species immediately following the stepwise application of light to the system. The theory of the experiment is given and a working surface presented which allows the analysis of experimental transients regardless of the cell geometry or solution flow rate used in their measurement. The approach is applied to the photo-electrochemical oxidation of the aminocarbene complex [(η5-C5H5)Fe(CO) P(p-Tol)3{equal to or precedes}C(NHMe)(Me)BF4 in acetonitrile solution at a platinum electrode. The process, in the presence of light of wavelengths near 330 nm, is confirmed to be of the photo-CE type. © 1995.
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spelling oxford-uuid:acc92796-1948-4301-90d2-ac584803d0df2022-03-27T03:31:19ZMECHANISTIC STUDY OF PHOTOELECTROCHEMICAL REACTIONS - PHOTO-TRANSIENT CHARACTERIZATION OF CE PROCESSESJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:acc92796-1948-4301-90d2-ac584803d0dfEnglishSymplectic Elements at Oxford1995Compton, REklund, JRebbitt, TA channel electrode photo-transient experiment is described for the mechanistic characterization of photo-CE processes. This involves monitoring the transport limited current due to the discharge of a photo-generated electroactive species immediately following the stepwise application of light to the system. The theory of the experiment is given and a working surface presented which allows the analysis of experimental transients regardless of the cell geometry or solution flow rate used in their measurement. The approach is applied to the photo-electrochemical oxidation of the aminocarbene complex [(η5-C5H5)Fe(CO) P(p-Tol)3{equal to or precedes}C(NHMe)(Me)BF4 in acetonitrile solution at a platinum electrode. The process, in the presence of light of wavelengths near 330 nm, is confirmed to be of the photo-CE type. © 1995.
spellingShingle Compton, R
Eklund, J
Rebbitt, T
MECHANISTIC STUDY OF PHOTOELECTROCHEMICAL REACTIONS - PHOTO-TRANSIENT CHARACTERIZATION OF CE PROCESSES
title MECHANISTIC STUDY OF PHOTOELECTROCHEMICAL REACTIONS - PHOTO-TRANSIENT CHARACTERIZATION OF CE PROCESSES
title_full MECHANISTIC STUDY OF PHOTOELECTROCHEMICAL REACTIONS - PHOTO-TRANSIENT CHARACTERIZATION OF CE PROCESSES
title_fullStr MECHANISTIC STUDY OF PHOTOELECTROCHEMICAL REACTIONS - PHOTO-TRANSIENT CHARACTERIZATION OF CE PROCESSES
title_full_unstemmed MECHANISTIC STUDY OF PHOTOELECTROCHEMICAL REACTIONS - PHOTO-TRANSIENT CHARACTERIZATION OF CE PROCESSES
title_short MECHANISTIC STUDY OF PHOTOELECTROCHEMICAL REACTIONS - PHOTO-TRANSIENT CHARACTERIZATION OF CE PROCESSES
title_sort mechanistic study of photoelectrochemical reactions photo transient characterization of ce processes
work_keys_str_mv AT comptonr mechanisticstudyofphotoelectrochemicalreactionsphototransientcharacterizationofceprocesses
AT eklundj mechanisticstudyofphotoelectrochemicalreactionsphototransientcharacterizationofceprocesses
AT rebbittt mechanisticstudyofphotoelectrochemicalreactionsphototransientcharacterizationofceprocesses