Articolo in rivista, 2021, ENG, 10.1039/D1DT02680A

Influence of temperature on the equilibria of oxidovanadium(iv) complexes in solution

Daniele Sanna, Giuseppe Lubinu, Valeria Ugone, Eugenio Garribba

Istituto di Chimica Biomolecolare, Consiglio Nazionale delle Ricerche, Trav. La Crucca 3, I-07100 Sassari, Italy; Dipartimento di Chimica e Farmacia, Università di Sassari, Via Vienna 2, I-07100 Sassari, Italy.

The equilibria in the solution of three different oxidovanadium(IV) complexes, VO(dhp)2 (dhp = 1,2-dimethyl-3-hydroxy-4(1H)-pyridinonato), VO(ma)2 (ma = maltolato) and VO(pic)2(H2O) (pic = picolinato), were examined in the temperature range of 120-352 K through a combination of instrumental (EPR spectroscopy) and computational techniques (DFT methods). The results revealed that a general equilibrium exists: VOL2 + H2O ? cis-VOL2(H2O) ? trans-VOL2(H2O), where cis and trans refer to the relative position of H2O and the oxido ligand. The equilibrium is more or less shifted to the right depending on the ligand, the temperature, the ionic strength and the coordinating properties of the solvent. With VO(dhp)2, only the square pyramidal species exists at 298 K in aqueous solution, while at 120 K the cis- and trans-VO(dhp)2(H2O) species are also present. The complex of maltol exists almost exclusively in the form cis-VO(ma)2(H2O) in aqueous solution at 298 K, while the trans species can be revealed only at higher temperatures, where the EPR linewidth significantly decreases. The equilibria involving 1-methylimidazole (MeIm), a model for the side chain His coordination, are also influenced by temperature, with its coordination being favored by decreasing the temperature. The implications of these results in the study of the (vanadium complex)-protein systems are discussed and the interaction with myoglobin (Mb) is examined as a representative example.

Dalton transactions (2003. Print) 50 (44), pp. 16326–16335

Keywords

vanadium compounds, EPR spectroscopy, DFT calculations

CNR authors

Sanna Daniele, Ugone Valeria

CNR institutes

ICB – Istituto di chimica biomolecolare

ID: 459862

Year: 2021

Type: Articolo in rivista

Creation: 2021-11-29 16:53:16.000

Last update: 2023-04-16 14:11:52.000

External links

OAI-PMH: Dublin Core

OAI-PMH: Mods

OAI-PMH: RDF

DOI: 10.1039/D1DT02680A

URL: https://doi.org/10.1039/D1DT02680A

External IDs

CNR OAI-PMH: oai:it.cnr:prodotti:459862

DOI: 10.1039/D1DT02680A

Scopus: 2-s2.0-85119610515