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dc.date.accessioned2018-09-12T10:03:18Z
dc.date.available2018-09-12T10:03:18Z
dc.date.created2017-09-12T10:26:12Z
dc.date.issued2017
dc.identifier.citationHolmsen, Marte Sofie Nova, Ainara Balcells, David Langseth, Eirin Øien-Ødegaard, Sigurd Heyn, Richard H. Tilset, Mats Laurenczy, Gábor . trans-Mutation at Gold(III): A mechanistic study of a catalytic acetylene functionalization via a double insertion pathway. ACS Catalysis. 2017, 7(8), 5023-5034
dc.identifier.urihttp://hdl.handle.net/10852/64649
dc.description.abstractThe Au(III) complex Au(tpy)(OAcF)2 (OAcF = OCOCF3; tpy = 2-(p-tolyl)pyridine) catalyzes the anti addition of trifluoroacetic acid (HOAcF) to acetylene to furnish vinyl trifluoroacetate. The Au(III) vinyl complex Au(tpy)(OAcF)(CH═CHOAcF) (vinyl group bonded trans to tpy-N) is formed during the early stage of the reaction. The vinyl complex, which has been isolated and structurally characterized, resists protolytic cleavage of the vinyl group, and therefore catalysis does not proceed by a simple formal insertion (i.e., coordination-nucleophilic attack-protolysis at the site trans to tpy-N) mechanism. Experimental evidence, including isotopic labeling, rather suggests that a double-insertion process is operative. The unobserved Au(III) divinyl complex Au(tpy)(CH═CHOAcF)2 is a crucial intermediate for which the true catalytic activity, comprising a coordination-nucleophilic attack-protolysis sequence, occurs at the site trans to tpy-C. The overall mechanism is in full agreement with DFT calculations and is a result of the considerable differences in the kinetic and thermodynamic trans effects of tpy-N versus tpy-C on each reaction step. The computational data provide a rationale for the catalytic functionalization of acetylene trans to tpy-C, whereas ethylene (previously reported) only undergoes a stoichiometric insertion, and then comes to a full stop, trans to tpy-N. © 2017 American Chemical Societyen_US
dc.languageEN
dc.publisherAmerican Chemical Society
dc.titletrans-Mutation at Gold(III): A mechanistic study of a catalytic acetylene functionalization via a double insertion pathwayen_US
dc.typeJournal articleen_US
dc.creator.authorHolmsen, Marte Sofie
dc.creator.authorNova, Ainara
dc.creator.authorBalcells, David
dc.creator.authorLangseth, Eirin
dc.creator.authorØien-Ødegaard, Sigurd
dc.creator.authorHeyn, Richard H.
dc.creator.authorTilset, Mats
dc.creator.authorLaurenczy, Gábor
cristin.unitcode185,15,12,54
cristin.unitnameKatalyse
cristin.ispublishedtrue
cristin.fulltextpreprint
cristin.qualitycode1
dc.identifier.cristin1492903
dc.identifier.bibliographiccitationinfo:ofi/fmt:kev:mtx:ctx&ctx_ver=Z39.88-2004&rft_val_fmt=info:ofi/fmt:kev:mtx:journal&rft.jtitle=ACS Catalysis&rft.volume=7&rft.spage=5023&rft.date=2017
dc.identifier.jtitleACS Catalysis
dc.identifier.volume7
dc.identifier.issue8
dc.identifier.startpage5023
dc.identifier.endpage5034
dc.identifier.doihttp://dx.doi.org/10.1021/acscatal.7b01364
dc.identifier.urnURN:NBN:no-67221
dc.type.documentTidsskriftartikkelen_US
dc.source.issn2155-5435
dc.identifier.fulltextFulltext https://www.duo.uio.no/bitstream/handle/10852/64649/2/Manuscript.pdf
dc.type.versionSubmittedVersion
dc.relation.projectNFR/221801
dc.relation.projectNFR/179568
dc.relation.projectNOTUR/NORSTORE/NN4654K


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