DLPNO-CCSD(T) and DFT Study of the Acetate-Assisted C–H Activation of Benzaldimine at [RuCl2(p-cymene)]2: The Relevance of Ligand Exchange Processes at Ruthenium(II) Complexes in Polar Protic Media

UDC.coleccionInvestigaciónes_ES
UDC.departamentoQuímicaes_ES
UDC.endPage8679es_ES
UDC.grupoInvSíntese Asimétricaes_ES
UDC.issue20es_ES
UDC.journalTitleDalton Transactionses_ES
UDC.startPage8662es_ES
UDC.volume53 (2024)es_ES
dc.contributor.authorOjea, Vicente
dc.contributor.authorRuiz, María
dc.date.accessioned2024-06-25T16:36:05Z
dc.date.available2024-06-25T16:36:05Z
dc.date.issued2024-04-25
dc.descriptionFinanciado para publicación en acceso aberto: Universidade da Coruña/CISUGes_ES
dc.description.abstract[Abstract] To gain mechanistic insights into the acetate-assisted cyclometallations of arylimines promoted by [RuCl2(p-cymene)]2 in polar protic media, DFT geometry optimizations (with M06 and ωB97X-D3 functionals and the cc-pVDZ-PP[Ru] basis set) followed by DLPNO-CCSD(T)/CBS energy evaluations were performed using benzaldimine as a model substrate and methanol as the solvent (with CPCM or SMD models). The calculation results show that coordination of the imine to an acetate ruthenium precursor is followed by anion (chloride or acetate) dissociation as the rate-determining step of the process. H-Bonding of two explicit MeOH to the anion reduces the calculated activation energy to ca. 23 kcal mol−1, in good agreement with the experimental half-life at room temperature. Subsequent AMLA/CMD C–H activation of the intermediate cationic complexes is a faster, reversible process. Alternative reaction pathways involving neutral diacetate ruthenium complexes offer AMLA/CMD transition state structures of lower energy but are precluded due to higher energy barriers for the initial ligand exchange processes at ruthenium. Solvent assistance accelerates the final chloride/acetate exchange processes on the cycloruthenate intermediates, particularly when compression in the condensed phase is taken into consideration. The performance of six DFT functionals (with the aug-pVTZ-PP[Ru] basis set) was assessed using the DLPNO-CCSD(T)/CBS reference energies. Neutral diacetate ruthenium complexes were incorrectly predicted as being kinetically relevant when using hybrid DFT methods (PBE0-D3(BJ), M06-2X or ωB97M-V). Good agreement between the calculated barrier heights and our benchmark energy results was obtained by using double-hybrid DFT methods. PWPB95 with D3(BJ) or D4 dispersion energy corrections was found to be the most accurate (ΔG≠ MUE of ca. 1 kcal mol−1). This study may aid our understanding of and help with further experimental investigations of synthetically useful carboxylate-assisted C–H bond functionalizations involving (N,C)-cyclometallated (p-cymene)Ru(II) intermediate complexes in sustainable polar protic solvents.es_ES
dc.description.sponsorshipFunding for open access charge from Universidade da Coruña/CISUG is acknowledgedes_ES
dc.identifier.citationOjea, V., and Ruiz, M. (2024). DLPNO-CCSD(T) and DFT study of the acetate-assisted C–H activation of benzaldimine at [RuCl2(p-cymene)]2: the relevance of ligand exchange processes at ruthenium(ii) complexes in polar protic media. Dalton Trans., 2024, 53, 8662-8679. https://doi.org/10.1039/D4DT00380Bes_ES
dc.identifier.doi10.1039/D4DT00380B
dc.identifier.issn1477-9234
dc.identifier.urihttp://hdl.handle.net/2183/37379
dc.language.isoenges_ES
dc.publisherRoyal Society of Chemistry (Gran Bretaña)es_ES
dc.relation.urihttps://doi.org/10.1039/D4DT00380Bes_ES
dc.rightsAtribución 3.0es_ES
dc.rights.accessRightsopen accesses_ES
dc.rights.urihttp://creativecommons.org/licenses/by/3.0/*
dc.titleDLPNO-CCSD(T) and DFT Study of the Acetate-Assisted C–H Activation of Benzaldimine at [RuCl2(p-cymene)]2: The Relevance of Ligand Exchange Processes at Ruthenium(II) Complexes in Polar Protic Mediaes_ES
dc.typejournal articlees_ES
dspace.entity.typePublication
relation.isAuthorOfPublication5cf715bc-5c4a-440d-a9be-a0d501b76a1b
relation.isAuthorOfPublication51cb91d3-79ab-444d-a358-e798775f3f54
relation.isAuthorOfPublication.latestForDiscovery5cf715bc-5c4a-440d-a9be-a0d501b76a1b

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