SYNTHESES AND INVESTIGATION OF CU (II) COMPLEX WITH 5-(2-PYRIDYL)-1,2,4-TRIAZOLE-A-YLACETIC ACID ETHYL ESTER

UDC 547+546.712'742'562

Authors

  • D. Khomenko, PhD student Taras Shevchenko National University of Kyiv image/svg+xml
  • R. Doroschuk, Cand. Sci. (Chem.) Taras Shevchenko National University of Kyiv image/svg+xml
  • R. Lampeka, DSc (Chemistry) Taras Shevchenko National University of Kyiv image/svg+xml

Keywords:

-

Abstract

New monomeric Cu(II) complex of  5-(2-pyridyl)-4H-1,2,4-triazole-α-ylacetic acid ethyl ester (L) have been prepared. Obtained compound were studied by means of ESR-  and IR-spectroscopy. The molecular and crystal structure of Cu(L)Cl2 have been studied by the single crystal X-ray diffraction. Square-planar [CuN2Cl2] coordination configuration was found and are suggested to be due to the helating nature of the ligand, which interacts with Cu(II) through N2triazole  and Npyridine atoms. As an interesting peculiarity of the molecular structure of Cu(L)Cl2, one should note the strong intramolecular hydrogen bond between triazole hydrogen and oxygen of ester group.

References

1. Gaccioli, F., Franchi-Gazzola, R., Lanfranchi, M., Marchio, L., Metta, G., Pellinghelli, A., Tardito, S., Tegoni, M. Synthesis, solution equilibria and antiproliferative activity of copper(II) aminomethyltriazole and aminomethylthioxotriazoline complexes // J. Inorg. Biochem. - 2005. – Vol. 99. – P. 1573 – 1584.

2. Ferrer, S., Ballesteros, R., Sambartolome, A., Gonzalez, M., Alzuet, G., Borras, J., Liu, M. Syntheses, crystal structures, and oxidative DNA cleavage of some Cu(II) complexes of 5-amino-3-pyridin-2-yl-1,2,4-triazole // J. Inorg. Biochem. 2004. – Vol. 98. – P. 1436 – 1446.

3. Ardizzoia, G. A., Brenna, S, Castelli, F., Galli, S., Marelli, C., Maspero, A. New copper(I) and silver(I) triazolato-complexes: Synthesis, reactivity and catalytic activity in olefin cyclopropanation // J. Organomet. Chem. - 2008. – Vol. 693. – P. 1870 – 1876.

4. Klingele, M.H., Noble, A., Boyd, P., Brooker, S. Synthesis and X-ray crystal structures of some mononuclear and dinuclear complexes of 4-isobutyl-3,5-di(2-pyridyl)-4H-1,2,4-triazole // Polyhedron - 2007. – Vol. 26. – P. 479 – 485.

5. Klingele, M.H., Brooker, S. The coordination chemistry of 4-substituted 3,5-di(2-pyridyl)-4H-1,2,4-triazoles and related ligands // Coord. Chem. Rev. - 2006. – Vol. 359. – P. 3875 – 3887. 6. Burke, H.M., Gallagher, J.F., Indelli, M.T., Vos. J.G. The synthesis and characterization of Rh(III) complexes with pyridyl triazole ligands // Inorg. Chim. Acta - 2004. – Vol. 357. – P. 2989 – 3000.

7. Sheldrick, G.M. // SADABS: Program for scaling and correction of area detector data. University of Gottingen, Germany, 1996.

8. Watkin, D.J., Prout, C.K., Carruthers, J.R., Betteridge, P.W. // CRYSTALS Issue 8. Oxford: Chemical Crystallography Laboratory, University of Oxford, 1996.

Published

2009-07-21

How to Cite

SYNTHESES AND INVESTIGATION OF CU (II) COMPLEX WITH 5-(2-PYRIDYL)-1,2,4-TRIAZOLE-A-YLACETIC ACID ETHYL ESTER: UDC 547+546.712’742’562. (2009). Bulletin of the Taras Shevchenko National University of Kyiv. Chemistry, 47(2), 52-54. https://chemistry.bulletin.knu.ua/article/view/8430

Most read articles by the same author(s)

1 2 > >>