4.7 Article

Synthesis, characterization and biological activity of some transition metals with Schiff base derived from 2-thiophene carboxaldehyde and aminobenzoic acid

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PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.saa.2005.03.031

Keywords

2-thiophene carboxaldehyde anthranilic acid Schiff base; transition metal complexes; stability constants; IR; H-1 NMR; conductance; solid reflectance; magnetic moment; thermal analysis; biological activity

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Metal complexes of Schiff base derived from 2-thiophene carboxaldehyde and 2-aminobenzoic acid (HL) are reported and characterized based on elemental analyses, IR, H-1 NMR, solid reflectance, magnetic moment, molar conductance and thermal analysis (TGA). The ligand dissociation as well as the metal-ligand stability constants were calculated pH metrically at 25 degrees C and ionic strength mu = 0.1 (1 M NaCl). The complexes are found to have the formulae [M(HL)2](X)(n)center dot yH(2)O (where M = Fe(III) (X = Cl, n = 3, y = 3), Co(II) (X Cl, n = 2, y = 1.5), Ni(II) (X = Cl, n = 2, y = 1) and UO2(II) (X = NO3, n = 2, y = 0)) and [M(L)(2)] (where M = Cu(II) (X = Cl) and Zn(II) (X = AcO)). The molar conductance data reveal that Fe(III) and Co(II), Ni(II) and UO2(II) chelates are ionic in nature and are of the type 3:1 and 2:1 electrolytes, respectively, while Cu(II) and Zn(II) complexes are non-electrolytes. IR spectra show that HL is coordinated to the metal ions in a terdentate manner with ONS donor sites of the carboxylate O, azomethine N and thiophene S. From the magnetic and solid reflectance spectra, it is found that the geometrical structure of these complexes are octahedral. The thermal behaviour of these chelates shows that the hydrated complexes losses water molecules of hydration in the first step followed immediately by decomposition of the anions and ligand molecules in the subsequent steps. The activation thermodynamic parameters, such as, E* Delta H*, Delta S* and Delta G* are calculated from the DrTG curves using Coats-Redfern method. The synthesized ligands, in comparison to their metal complexes also were screened for their antibacterial activity against bacterial species, Escherichia coli, Pseudomonas aeruginosa, Staphylococcus pyogones and Fungi (Candida). The activity data show that the metal complexes to be more potent/antibacterial than the parent Schiff base ligand against one or more bacterial species. (c) 2005 Elsevier B.V. All rights reserved.

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