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One-electron oxidation of chloroquine, cymanquine, and related aminoquinolines in nonaqueous media

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dc.contributor.author Lam, Kevin
dc.contributor.author Van Wyck, Stephen J.
dc.contributor.author Geiger, William E.
dc.creator Kevin, Lam
dc.date.accessioned 2017-12-20T03:28:57Z
dc.date.available 2017-12-20T03:28:57Z
dc.date.issued 2017-08-15
dc.identifier DOI:10.1016/j.jelechem.2017.06.041
dc.identifier.citation Kevin Lam, Stephen J. Van Wyck, William E. Geiger, One-electron oxidation of chloroquine, cymanquine, and related aminoquinolines in nonaqueous media, In Journal of Electroanalytical Chemistry, Volume 799, 2017, Pages 531-537 en_US
dc.identifier.issn 15726657
dc.identifier.uri https://www.sciencedirect.com/science/article/pii/S1572665717304708
dc.identifier.uri http://nur.nu.edu.kz/handle/123456789/2955
dc.description.abstract Abstract The anodic oxidation of a series of secondary-amine-substituted chloroquinoline derivatives, 1–5, has been studied in dichloromethane/0.05M [NBu4][B(C6F5)4]. Compounds 4 and 5 contain organometallic moieties of the cymantrene family as part of the amine group. All five compounds undergo an electrochemically irreversible one-electron oxidation. For compounds 2–4, this occurs at the secondary amine group (0.86 to 0.98V vs ferrocene). The oxidations of others occur at tertiary amines located either in the side chain of the quinoline secondary amine (1, 0.68V) or in the cyclopentadienyl ring of the cymantrene moiety (5, 0.82V). The anodic reaction products have been isolated and shown to be ring-nitrogen protonated aminochloroquinolinium ions. Abstraction of a hydrogen atom from the solvent by the putative aminochloroquinoline radical cation is thought to be responsible for formation of the protonated oxidation product. Cathodic reduction of the latter regenerates the neutral starting material in an overall chemically reversible process that mimics a simple acid/base reaction at the quinoline ring nitrogen. en_US
dc.language.iso en en_US
dc.publisher Journal of Electroanalytical Chemistry en_US
dc.relation.ispartof Journal of Electroanalytical Chemistry
dc.subject Quinoline oxidation en_US
dc.subject Radical cation en_US
dc.subject H-atom capture en_US
dc.subject Aliphatic amine oxidation en_US
dc.subject Cymantrene en_US
dc.subject Quinoline-cymantrene conjugate en_US
dc.title One-electron oxidation of chloroquine, cymanquine, and related aminoquinolines in nonaqueous media en_US
dc.type Article en_US
dc.rights.license © 2017 Elsevier B.V. All rights reserved.
elsevier.identifier.doi 10.1016/j.jelechem.2017.06.041
elsevier.identifier.eid 1-s2.0-S1572665717304708
elsevier.identifier.pii S1572-6657(17)30470-8
elsevier.identifier.scopusid 85022218514
elsevier.volume 799
elsevier.coverdate 2017-08-15
elsevier.coverdisplaydate 15 August 2017
elsevier.startingpage 531
elsevier.endingpage 537
elsevier.openaccess 0
elsevier.openaccessarticle false
elsevier.openarchivearticle false
elsevier.teaser The anodic oxidation of a series of secondary-amine-substituted chloroquinoline derivatives, 1–5, has been studied in dichloromethane/0.05M [NBu4][B(C6F5)4]. Compounds 4 and 5 contain organometallic...
elsevier.aggregationtype Journal
workflow.import.source science


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