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Synthesis, Characterization and Antimicrobial Studies of Coordination Compounds of L-Serine and their Mixed Ligand Complexes with L-Aspartic Acid
Corresponding Author(s) : T.O. Aiyelabola
Asian Journal of Chemistry,
Vol. 29 No. 2 (2017): Vol 29 Issue 2
Abstract
The coordination complexes of Co(II), Ni(II) and Cu(II) with L-serine and its mixed ligand with L-aspartic acid were synthesized and characterized. The compounds were characterized using UV-visible, infrared spectra and metal analyses. Antimicrobial study of the complexes was carried out, the tested microbes included two Gram-positive and five Gram-negative bacteria and one fungus. The results suggested an octahedral geometry for the complexes with L-aspartic acid and L-serine acting as tridentate ligands. The ligands coordinated with the metal ions through N and O donor atoms respectively. The antimicrobial study showed the complexes possess activity against the micro-organisms.
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- D.L. Stone, D.K. Smith and A.C. Whitwood, Polyhedron, 23, 1709 (2004).
- B. Saleema and G. Parameswaean, Asian J. Chem., 15, 1491 (2003).
- S. Bunel, G. Larrazabal and A. Decinti, J. Inorg. Nucl. Chem., 43, 871 (1981).
- A.S. Bodkhe, S.S. Patil and M.M. Shaikh, Acta Pol. Pharm.-Drug Res., 69, 871 (2012).
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- K. Nakamoto, Complexes of Amino Acids; In: Infrared and Raman Spectra of Inorganic and Coordination Compounds, Wiley Interscience, New York, edn 6, pp. 66-74 (2009).
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- A. Thakur, Principle, Working and Applications of UV Spectroscopy (2011).
- Z.H. Chohan, Appl. Organomet. Chem., 16, 17 (2002).
- Z.H. Chohan, M. Arif, Z. Shafiq, M. Yaqub and C.T. Supuran, J. Enzyme Inhib. Med. Chem., 21, 95 (2006).
References
A. Romerosa, P. Bergamini, V. Bertolasi, A. Canella, M. Cattabriga, R. Gavioli, S. Mañas, N. Mantovani and L. Pellacani, Inorg. Chem., 43, 905 (2004).
S. Rafique, M. Idrees, A. Nasim, H. Akbar and A. Athar, Biotechnol. Mol. Biol. Rev., 5, 38 (2010).
E. Farkas, É.A. Enyedy, G. Micera and E. Garribba, Polyhedron, 19, 1727 (2000).
H. Sigel and D.B. McCormick, J. Am. Chem. Soc., 93, 2041 (1971).
D.L. Stone, D.K. Smith and A.C. Whitwood, Polyhedron, 23, 1709 (2004).
B. Saleema and G. Parameswaean, Asian J. Chem., 15, 1491 (2003).
S. Bunel, G. Larrazabal and A. Decinti, J. Inorg. Nucl. Chem., 43, 871 (1981).
A.S. Bodkhe, S.S. Patil and M.M. Shaikh, Acta Pol. Pharm.-Drug Res., 69, 871 (2012).
P.R. Murray, E.J. Baroon, M.A. Pfaller, F.C. Tenover and R.H. Yolke, Manual of Clinical Microbiology, American Society for Microbiology, Washington, DC, edn 6, pp. 56-77 (1995).
G.L. Miessler and D.A. Tarr, Coordination Compounds, In: Inorganic Chemistry, Pearson Prentice Hall, New York, p. 642, pp. 315-316 (1999).
K. Nakamoto, Complexes of Amino Acids; In: Infrared and Raman Spectra of Inorganic and Coordination Compounds, Wiley Interscience, New York, edn 6, pp. 66-74 (2009).
N.N. Greenwood and A. Earnshaw, Coordination Compounds, In: Chemistry of the Elements, Oxford, Butterworth-Heinemann, Hong Kong, edn 2, pp. 1060-1090, 1290-1326 (1997).
A. Thakur, Principle, Working and Applications of UV Spectroscopy (2011).
Z.H. Chohan, Appl. Organomet. Chem., 16, 17 (2002).
Z.H. Chohan, M. Arif, Z. Shafiq, M. Yaqub and C.T. Supuran, J. Enzyme Inhib. Med. Chem., 21, 95 (2006).