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Semi-Rigid (Aminomethyl) Piperidine-Based Pentadentate Ligands for Mn(II) Complexation

Two pentadentate ligands built on the 2-aminomethylpiperidine structure and bearing two tertiary amino and three oxygen donors (three carboxylates in the case of AMPTA and two carboxylates and one phenolate for AMPDA-HB) were developed for Mn(II) complexation. Equilibrium studies on the ligands and...

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Detalles Bibliográficos
Autores principales: Martinelli, Jonathan, Callegari, Edoardo, Baranyai, Zsolt, Fraccarollo, Alberto, Cossi, Maurizio, Tei, Lorenzo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8513077/
https://www.ncbi.nlm.nih.gov/pubmed/34641536
http://dx.doi.org/10.3390/molecules26195993
Descripción
Sumario:Two pentadentate ligands built on the 2-aminomethylpiperidine structure and bearing two tertiary amino and three oxygen donors (three carboxylates in the case of AMPTA and two carboxylates and one phenolate for AMPDA-HB) were developed for Mn(II) complexation. Equilibrium studies on the ligands and the Mn(II) complexes were carried out using pH potentiometry, (1)H-NMR spectroscopy and UV-vis spectrophotometry. The Mn complexes that were formed by the two ligands were more stable than the Mn complexes of other pentadentate ligands but with a lower pMn than Mn(EDTA) and Mn(CDTA) (pMn for Mn(AMPTA) = 7.89 and for Mn(AMPDA-HB) = 7.07). (1)H and (17)O-NMR relaxometric studies showed that the two Mn-complexes were q = 1 with a relaxivity value of 3.3 mM(−1) s(−1) for Mn(AMPTA) and 3.4 mM(−1) s(−1) for Mn(AMPDA-HB) at 20 MHz and 298 K. Finally, the geometries of the two complexes were optimized at the DFT level, finding an octahedral coordination environment around the Mn(2+) ion, and MD simulations were performed to monitor the distance between the Mn(2+) ion and the oxygen of the coordinated water molecule to estimate its residence time, which was in good agreement with that determined using the (17)O NMR data.