Non-oxo vanadium(IV) alkoxide chemistry: solid state structures, aggregation equilibria and thermochromic behaviour in solution

The reversible thermochromic behaviour of homoleptic [{V(OR)(4)}(n)] complexes in solution [R = Pr(i) (product I), Bu(s) (B(s)), Nep (N) and Cy (C)] is accounted for the existence of an aggregation equilibrium involving dimeric and monomeric species in which vanadium(iv) is respectively five- and fo...

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Veröffentlicht in:Dalton transactions : an international journal of inorganic chemistry 2011-04, Vol.40 (13), p.3198-3210
Hauptverfasser: Westrup, Kátia C M, Gregório, Thaiane, Stinghen, Danilo, Reis, Dayane M, Hitchcock, Peter B, Ribeiro, Ronny R, Barison, Andersson, Back, Davi F, de Sá, Eduardo L, Nunes, Giovana G, Soares, Jaísa F
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Sprache:eng
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Zusammenfassung:The reversible thermochromic behaviour of homoleptic [{V(OR)(4)}(n)] complexes in solution [R = Pr(i) (product I), Bu(s) (B(s)), Nep (N) and Cy (C)] is accounted for the existence of an aggregation equilibrium involving dimeric and monomeric species in which vanadium(iv) is respectively five- and four-coordinate. Bulky R groups such as Bu(t) and Pe(t) (tert-pentoxide) prevent aggregation and therefore give rise to exclusively mononuclear compounds (B(t) and P(t), respectively) that are not thermochromic. The complexes and their temperature-dependent interconversion were characterised by single crystal X-ray diffractometry, magnetic susceptibility measurements and electronic, FTIR and EPR spectroscopies in a wide temperature range. Equilibrium constants and enthalpy and entropy changes for the dimerization reactions have been determined and compared with literature data.
ISSN:1477-9226
1477-9234
DOI:10.1039/c0dt01547d