Ferromagnetic Coupling in Oxidovanadium(IV)-Porphyrin Radical Dimers.
Akhil Kumar SinghMohammad UsmanSabyasachi SarkarGiuseppe SciortinoDevesh KumarEugenio GarribbaSankar Prasad RathPublished in: Inorganic chemistry (2021)
Three different oxidovanadium(IV) porphyrin dimers with anti, cis, and trans arrangements of the two rings have been synthesized by changing the bridge between the porphyrin macrocycles. This provides a unique opportunity to investigate the role of the bridge and spatial arrangement between the two VIVO centers for their electronic communication and magnetic coupling. They were characterized by the combined application of XRD analysis, UV-vis and electron paramagnetic resonance (EPR) spectroscopy, cyclic voltammetry, magnetic susceptibility, and DFT calculations. One- and two-electron oxidations produce mono- and dication diradical species, respectively, which display an unusual ferromagnetic interaction between the unpaired spins of vanadium(IV) and porphyrin π-cation radical, in contrast to other metalloporphyrin dimers. The oxidized species show a dissimilar behavior between cis and trans isomers. The ferromagnetic coupling occurs between the porphyrin π-cation radical and the unpaired electron of the VIVO ion on the dxy orbital, orthogonal to the porphyrin-based molecular orbitals a1u and a2u.
Keyphrases
- electron transfer
- photodynamic therapy
- energy transfer
- room temperature
- metal organic framework
- density functional theory
- ionic liquid
- magnetic resonance
- molecularly imprinted
- single molecule
- magnetic resonance imaging
- computed tomography
- molecular dynamics simulations
- molecular docking
- mass spectrometry
- tandem mass spectrometry
- liquid chromatography
- aqueous solution
- crystal structure