Hemilabile MIC^N ligands allow oxidant-free Au(I)/Au(III) arylation-lactonization of γ-alkenoic acids
dc.contributor.author
dc.date.accessioned
2022-07-26T08:33:07Z
dc.date.available
2022-07-26T08:33:07Z
dc.date.issued
2022-07-22
dc.identifier.issn
2041-6520
dc.identifier.uri
dc.description.abstract
Oxidant-free Au-catalyzed reactions are emerging as a new synthetic tool for innovative organic transformations. Still, a deeper mechanistic understanding is needed for a rational design of these processes. Here we describe the synthesis of two Au(I) complexes bearing bidentated hemilabile MIC N ligands, [AuI(MIC N)Cl], and their ability to stabilize square-planar Au(III) species (MIC = mesoionic carbene). The presence of the hemilabile N-ligand contributed to stabilize the ensuing Au(III) species acting as a five-membered ring chelate upon its coordination to the metal center. The Au(III) complexes can be obtained either by using external oxidants or, alternatively, by means of feasible oxidative addition with strained biphenylene Csp2-Csp2 bonds as well as with aryl iodides. Based on the fundamental knowledge gained on the redox properties on these Au(I)/Au(III) systems, we successfully develop a novel Au(I)-catalytic procedure for the synthesis of a γ-substituted γ-butyrolactones through the 1,2-arylation - lactonization reaction of the corresponding γ-alkenoic acid. The oxidative addition of the aryl iodide, which is in turn allowed by the hemilabile nature of the MIC N ligand, is an essential step of this transformation
dc.description.sponsorship
We acknowledge financial support from MINECO of Spain for
projects CTQ2016-77989-P, PID2019-104498GB-I00 and
RTI2018-098903-J-100 financed by MICIN/AEI/10.13039/
501100011033/ FEDER “Una manera de hacer Europa”, and for
a FPU PhD grant to P.F. We also thank the Generalitat de
Catalunya for project 2017SGR264 to X.R. and for a Beatriu de
Pinós contract to H.V. (Beatriu de Pinós, 2019-BP-0080). X.R. is
grateful for an ICREA Acadèmia award. G.G.-B gratefully
acknowledges (RYC2019-026693-I/AEI/10.13039/
501100011033) “El Fondo Social Europeo invierte en tu futuro’.
Gobierno de Aragón/FEDER, UE (GA/FEDER, Reactividad y
catálisis en química inorgánica, Group E50_20D)
dc.format.mimetype
application/pdf
dc.language.iso
eng
dc.publisher
Royal Society of Chemistry (RSC)
dc.relation
info:eu-repo/grantAgreement/AEI/Plan Estatal de Investigación Científica y Técnica y de Innovación 2017-2020/PID2019-104498GB-I00/ES/NANOCAPSULAS COMO PLATAFORMAS SUPRAMOLECULARES PARA LA FUNCIONALIZACION REGIOSELECTIVA DE FULLERENOS Y CATALISIS EN EL ESPACIO CONFINADO/
dc.relation.isformatof
Reproducció digital del document publicat a: https://doi.org/10.1039/D2SC01966C
dc.relation.ispartof
Chemical Science, 2022, núm. 22
dc.relation.ispartofseries
Articles publicats (D-Q)
dc.rights
Reconeixement-NoComercial 4.0 Internacional
dc.rights.uri
dc.source
Font Rubio, Pau Valdés, Hugo Guisado-Barrios, Gregorio Ribas Salamaña, Xavi 2022 Hemilabile MIC^N ligands allow oxidant-free Au(I)/Au(III) arylation-lactonization of γ-alkenoic acids Chemical Science undef undef
dc.subject
dc.title
Hemilabile MIC^N ligands allow oxidant-free Au(I)/Au(III) arylation-lactonization of γ-alkenoic acids
dc.type
info:eu-repo/semantics/article
dc.rights.accessRights
info:eu-repo/semantics/openAccess
dc.type.version
info:eu-repo/semantics/publishedVersion
dc.identifier.doi
dc.identifier.idgrec
035518
dc.contributor.funder
dc.type.peerreviewed
peer-reviewed
dc.relation.FundingProgramme
dc.relation.ProjectAcronym
dc.identifier.eissn
2041-6539