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dc.contributor.authorLucio-Martínez, F.
dc.contributor.authorGarda, Z.
dc.contributor.authorVáradi, B.
dc.contributor.authorKálmán, F.K.
dc.contributor.authorEsteban Gómez, David
dc.contributor.authorTóth, É.
dc.contributor.authorTircsó, G.
dc.contributor.authorPlatas Iglesias, Carlos
dc.date.accessioned2025-05-16T08:45:56Z
dc.date.available2025-05-16T08:45:56Z
dc.date.issued2022
dc.identifier.issn1520-510X
dc.identifier.urihttp://hdl.handle.net/20.500.11940/20046
dc.description.abstract[EN] The stability constants of lanthanide complexes with the potentially octadentate ligand CHXOCTAPA4-, which contains a rigid 1,2-diaminocyclohexane scaffold functionalized with two acetate and two picolinate pendant arms, reveal the formation of stable complexes [log KLaL= 17.82(1) and log KYbL= 19.65(1)]. Luminescence studies on the Eu3+and Tb3+analogues evidenced rather high emission quantum yields of 3.4 and 11%, respectively. The emission lifetimes recorded in H2O and D2O solutions indicate the presence of a water molecule coordinated to the metal ion. 1H nuclear magnetic relaxation dispersion profiles and 17O NMR chemical shift and relaxation measurements point to a rather low water exchange rate of the coordinated water molecule (kex298= 1.58 × 106s-1) and relatively high relaxivities of 5.6 and 4.5 mM-1s-1at 20 MHz and 25 and 37 °C, respectively. Density functional theory calculations and analysis of the paramagnetic shifts induced by Yb3+indicate that the complexes adopt an unprecedented cis geometry with the two picolinate groups situated on the same side of the coordination sphere. Dissociation kinetics experiments were conducted by investigating the exchange reactions of LuL occurring with Cu2+. The results confirmed the beneficial effect of the rigid cyclohexyl group on the inertness of the Lu3+complex. Complex dissociation occurs following proton- and metal-assisted pathways. The latter is relatively efficient at neutral pH, thanks to the formation of a heterodinuclear hydroxo complex.
dc.language.isoenes
dc.rightsAtribución 4.0 Internacional
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/
dc.titleRigidified Derivative of the Non-macrocyclic Ligand H4OCTAPA for Stable Lanthanide(III) Complexation
dc.typeJournal Articlees
dcterms.bibliographicCitationLucio-Martínez F, Garda Z, Váradi B, Kálmán FK, Esteban-Gómez D, Tóth É, et al. Rigidified Derivative of the Non-macrocyclic Ligand H4OCTAPA for Stable Lanthanide(III) Complexation. Inorganic Chemistry. 2022;61(12):5157-7
dc.authorsophosLucio-Martínez, C. F.;Garda, Z.;Váradi, B.;Kálmán, F. K.;Esteban-Gómez, D.;Tóth, É;Tircsó, G.;Platas, Iglesias
dc.identifier.doi10.1021/ACS.INORGCHEM.2C00501
dc.identifier.sophos623f9c66c8882379aff386c7
dc.issue.number12
dc.journal.titleInorganic Chemistry
dc.page.initial5157
dc.page.final5171
dc.relation.publisherversionhttps://pubs.acs.org/doi/10.1021/acs.inorgchem.2c00501es
dc.rights.accessRightsopenAccess
dc.subject.keywordINIBICes
dc.volume.number61


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