Issue 11, 1986

Thiosemicarbazones as co-ordinating agents. Solution chemistry and X-ray structure of pyridoxal thiosemicarbazone trihydrate and spectroscopic properties of its metal complexes

Abstract

The ligand behaviour of pyridoxal thiosemicarbazone (H2L) was examined in a series of metal complexes of formula M(H2L)X2, M(HL)X, and ML (M = Co, Ni, Cu, or Zn; X = NO3 or CH3CO2) which were characterized by analytical methods and i.r. spectroscopy. Changes in the vibrational absorptions of the ligand upon co-ordination are discussed. The X-ray structure of uncomplexed H2L·3H2O was determined. Crystals are monoclinic, space group P21/n, with a= 16.126(1), b= 7.267(1), c= 12.466(1)Å, and β= 108.60(1)°. The structure was solved by direct methods and refined by full-matrix least squares to a final R value of 0.058 for 1 262 observed reflections. The thiosemicarbazone moiety shows an E configuration about both the C(2)–N(3) and C(1)–N(2) bonds, and the phenolic oxygen is traps to N(3). The protonation constants of H2L were determined by spectrophotometric methods at 25 °C and I= 0.5 mol dm–3(KCl): log β011= 11.111(22), log β021= 19.048(25), and log β031= 23.342(27). The spectrophotometric characteristics of the various species are reported; the experimental spectra are in good agreement with calculated ones.

Article information

Article type
Paper

J. Chem. Soc., Dalton Trans., 1986, 2455-2461

Thiosemicarbazones as co-ordinating agents. Solution chemistry and X-ray structure of pyridoxal thiosemicarbazone trihydrate and spectroscopic properties of its metal complexes

M. F. Belicchi, G. F. Gasparri, E. Leporati, C. Pelizzi, P. Tarasconi and G. Tosi, J. Chem. Soc., Dalton Trans., 1986, 2455 DOI: 10.1039/DT9860002455

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