Tetrahedral and octahedral complexes of vanadium(III)

Autor: D. E. Scaife, R. S. Nyholm, R. J. H. Clark
Rok vydání: 1966
Předmět:
Zdroj: Journal of the Chemical Society A: Inorganic, Physical, Theoretical. :1296
ISSN: 0022-4944
DOI: 10.1039/j19660001296
Popis: Anhydrous vanadium trichloride and tribromide react with acetonitrile to produce non-electrolytic complexes of the type [VX3,3CH3CN](X = Cl or Br) both in solution and in the solid state. Addition of tetraethylammonium, methyltriphenylarsonium, or tetraphenylarsonium chlorides to acetonitrile solutions of the above result in the precipitation of complexes of the type R+[VX4,2CH3CN]–(R = Et4N+, MePh3As+, or Ph4As+). Mixed halogeno-species of this type may also be synthesised. Reaction of the complex Et4N[VCl4,2CH3CN] with dry pyridine or with 2,2′-bipyridyl or 1,10-phenanthroline (in acetonitrile) yields complexes of the type Et4N[VCl4,2L], where L = py, ½ bipy, or ½ phen. Studies of the visible and infrared spectra of all the above complexes demonstrate that in each case the vanadium(III) is octahedrally co-ordinated, and estimates of the ligand-field splitting parameter (Dq) and Racah parameter (B) for these complexes are given.Thermal decomposition of the bis-acetonitrile derivatives at 100° yield complexes of the type R+VX4–(X = Cl or Br) as well as the mixed complex Et4N+ VCl3Br–. The electronic spectra (band positions and extinction coefficients), infrared spectra, and X-ray powder photographs of the complexes demonstrate conclusively that the VX4– ions are tetrahedral in the salts Ph4AsVCl4, Ph3MeAsVCl4, and Et4NVBr4, as might be expected for four-co-ordinate ions with the e2 configuration. The parameter 10Dq is calculated to be 5400 cm.–1 for the VCl4– ion. The room-temperature magnetic moments of the complexes (∼2·8 B.M.) are consistent with the presence of two unpaired electrons per vanadium atom in each case.
Databáze: OpenAIRE