Article citationsMore>>
Jiménez-Pérez, V.M., Mu&ncirc;oz-Flores, B.M., Gómez, J.A., Rangel, L.D., Navarro, R.C., Waksman, N. and Durón, R.R. (2014) Structural Characterization of (E)-4-((4-Nitrobenzylidene)Amino)Phenol Schiff Base. Investigation of Its Electrochemical, Cytotoxic, Antibacterial, and Antifungal Activity. International Journal of Electrochemical Science, 9, 7431-7445.
has been cited by the following article:
-
TITLE:
Synthesis, Spectroscopic, Structural Characterization, Conductivity and Electrochemical Studies of a Schiff Base Ligand and Its Copper Complexes
AUTHORS:
Atinafu Abayneh, Tesfay Gebretsadik, Sisay Tadesse, Madhu Thomas
KEYWORDS:
Schiff Base Ligand, Copper(II) Complexes, Cyclic Voltammetry
JOURNAL NAME:
Advances in Chemical Engineering and Science,
Vol.8 No.4,
October
19,
2018
ABSTRACT: Schiff base ligand (L) derived from glyoxal and 4-aminoantipyrine was synthesized. The ligand (L) has been characterized by IR, NMR, electronic spectral studies and electrochemical studies. Cu(II) complexes of a Schiff base ligand (L) from 4-aminoantpyrine and glyoxal having the composition [CuL1]X2 where X = Cl¯or NO3¯ have been prepared and characterized by elemental analysis, electrical conductivity in non-aqueous solvent, infrared and electronic, as well as cyclic voltammetric
studies. L acts as a neutral tetradentate ligand coordinating through both the carbonyl oxygen and azomethine nitrogen. On both the complexes both the anions are not coordinated. A square planar geometry is assigned for complexes. The electrochemical studies of ligand show a typical cyclic voltammogram for an irreversible process. While copper(II) complexes show the typical cyclic voltammograms for quasi reversible process.