Designing a Dy-2 Single-Molecule Magnet with Two Well Differentiated Relaxation Processes by Using a Nonsymmetric Bisbidentate Bipyrimidine-N-Oxide Ligand: A Comparison with Mononuclear Counterparts

dc.contributor.authorDiaz-Ortega, Ismael F.
dc.contributor.authorHerrera, Juan Manuel
dc.contributor.authorAravena Ponce, Daniel Alejandro
dc.contributor.authorRuiz Sabín, Eliseo
dc.contributor.authorGupta, Tulika
dc.contributor.authorRajaraman, Gopalan
dc.contributor.authorNojiri, H.
dc.contributor.authorColacio, Enrique
dc.date.accessioned2020-04-02T08:06:09Z
dc.date.available2020-04-02T08:06:09Z
dc.date.issued2018-05-18
dc.date.updated2020-04-02T08:06:09Z
dc.description.abstractHerein we report a dinuclear [(μ-mbpymNO)- {(tmh)3Dy}2] (1) single-molecule magnet (SMM) showing two nonequivalent DyIII centers, which was rationally prepared from the reaction of Dy(tmh)3 moieties (tmh = 2,2,6,6-tetramethyl-3,5- heptanedionate) and the asymmetric bis-bidentate bridging ligand 4-methylbipyrimidine (mbpymNO). Depending on whether the DyIII ions coordinate to the N^O or N^N bidentate donor sets, the DyIII sites present a NO7 (D2d geometry) or N2O6 (D4d) coordination sphere. As a consequence, two different thermally activated magnetic relaxation processes are observed with anisotropy barriers of 47.8 and 54.7 K. Ab initio calculations confirm the existence of two different relaxation phenomena and allow one to assign the 47.8 and 54.7 K energy barriers to the Dy(N2O6) and Dy(NO7) sites, respectively. Two mononuclear complexes, [Dy(tta)3(mbpymNO)] (2) and [Dy(tmh)3(phenNO)] (3), have also been prepared for comparative purposes. In both cases, the DyIII center shows a NO7 coordination sphere and SMM behavior is observed with Ueff values of 71.5 K (2) and 120.7 K (3). In all three cases, ab initio calculations indicate that relaxation of the magnetization takes place mainly via the first excited-state Kramers doublet through Orbach, Raman, and thermally assisted quantum-tunnelling mechanisms. Pulse magnetization measurements reveal that the dinuclear and mononuclear complexes exhibit hysteresis loops with double- and single-step structures, respectively, thus supporting their SMM behavior.
dc.format.extent14 p.
dc.format.mimetypeapplication/pdf
dc.identifier.idgrec681814
dc.identifier.issn0020-1669
dc.identifier.urihttps://hdl.handle.net/2445/154822
dc.language.isoeng
dc.publisherAmerican Chemical Society
dc.relation.isformatofVersió postprint del document publicat a: https://doi.org/10.1021/acs.inorgchem.8b00427
dc.relation.ispartofInorganic Chemistry, 2018, vol. 57, num. 11, p. 6362-6375
dc.relation.urihttps://doi.org/10.1021/acs.inorgchem.8b00427
dc.rights(c) American Chemical Society , 2018
dc.rights.accessRightsinfo:eu-repo/semantics/openAccess
dc.sourceArticles publicats en revistes (Química Inorgànica i Orgànica)
dc.subject.classificationTerres rares
dc.subject.classificationImants
dc.subject.classificationLligands
dc.subject.classificationIons
dc.subject.classificationPropietats magnètiques
dc.subject.otherRare earths
dc.subject.otherMagnets
dc.subject.otherLigands
dc.subject.otherIons
dc.subject.otherMagnetic properties
dc.titleDesigning a Dy-2 Single-Molecule Magnet with Two Well Differentiated Relaxation Processes by Using a Nonsymmetric Bisbidentate Bipyrimidine-N-Oxide Ligand: A Comparison with Mononuclear Counterparts
dc.typeinfo:eu-repo/semantics/article
dc.typeinfo:eu-repo/semantics/acceptedVersion

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