In this contribution, a terpyridine-based ligand bearing a thioether functionality is used to prepare a new cobalt(ii) spin crossover complex: [Co(TerpyPhSMe)2](PF6)2 (1), where TerpyPhSMe is 4′-(4-methylthiophenyl)-2,2′:6′,2′′-terpyridine. Its structure, determined by single crystal X-ray diffraction, reveals a mer coordination of the tridentate terpyridine ligands, leading to a tetragonally compressed octahedron. Intermolecular interactions in the crystal lattice freeze the complex in the high spin state in the solid state at all temperatures, as indicated by magnetometry and Electron Paramagnetic Resonance (EPR) spectra. When dissolved in acetonitrile, however, temperature dependent electronic, 1H-NMR and EPR spectra highlight an entropy-driven spin crossover transition, whose thermodynamics parameters have been determined. This is the first report of a cobalt(ii) SCO complex featuring a thioether group, allowing its implementation in chemically grown bistable monolayers and may ope...

Thermodynamics of spin crossover in a bis(terpyridine) cobalt(ii) complex featuring a thioether functionality

Gallo, Angelo;
2024-01-01

Abstract

In this contribution, a terpyridine-based ligand bearing a thioether functionality is used to prepare a new cobalt(ii) spin crossover complex: [Co(TerpyPhSMe)2](PF6)2 (1), where TerpyPhSMe is 4′-(4-methylthiophenyl)-2,2′:6′,2′′-terpyridine. Its structure, determined by single crystal X-ray diffraction, reveals a mer coordination of the tridentate terpyridine ligands, leading to a tetragonally compressed octahedron. Intermolecular interactions in the crystal lattice freeze the complex in the high spin state in the solid state at all temperatures, as indicated by magnetometry and Electron Paramagnetic Resonance (EPR) spectra. When dissolved in acetonitrile, however, temperature dependent electronic, 1H-NMR and EPR spectra highlight an entropy-driven spin crossover transition, whose thermodynamics parameters have been determined. This is the first report of a cobalt(ii) SCO complex featuring a thioether group, allowing its implementation in chemically grown bistable monolayers and may ope...
2024
53
23
9933
9941
Ferraz Lobato, Lúcio; Ciattini, Samuele; Gallo, Angelo; Allão Cassaro, Rafael A.; Sorace, Lorenzo; Poneti, Giordano
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/1981230
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