Copyright (c) 2014 Rachana Kumari1, B.K. Rai2
This work is licensed under a Creative Commons Attribution 4.0 International License.
Complexation and Antimicrobial Study of Cobalt(II), Nickel(II) and Copper(II) Metal Ions with Nitrogen and Oxygen Containing Schiff Base
Corresponding Author(s) : Rachana Kumari1
Asian Journal of Chemistry,
Vol 26 No Supplementary Issue
Abstract
Transition metal complexes of the composition [M(BHQH)2X2]; where M = Co(II), Ni(II) and Cu(II); BHQH = 2-butyl-[3-(hydroxy propyl)]-3,1-(4H)-quinazoline-4-hydrazone, X = NH3, pyridine, a, b, g-picolines have been prepared. The complexes have been characterized by molar mass, elemental analyses, molar conductance, magnetic moment, electronic, I.R. spectral studies. On the basis of above studies the ligand (BHQH) is suggested to acts in a bidentate manner and coordination takes place through azomethine nitrogen and oxygen atom of hydroxyl group after deprotonation. The remaining coordination sites are occupied by neutral molecules such as NH3, pyradine, a, b, g picolines. The Co(II), Ni(II) complexes have proposes octahedral geometry whereas, Cu(II) complexes were proposed to have distorted octahedral geometry. in vitro the synthesized compounds were screened against E. coli by disc diffusion method.
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- S. Gemma, G. Kukreja, C. Fattorusso, M. Persico, M.P. Romano, M. Altarelli, L. Savini, G. Campiani, E. Fattorusso, N. Basilico, D. Taramelli, V. Yardley and S. Butini, Bioorg. Med. Chem. Lett., 16, 5384 (2006).
- V. Mahalingam, N. Chitrapriya, M. Zeller and K. Natarajan, Polyhedron, 28, 1532 (2009).
- K.K. Vijaya Raj, B. Narayana, B.V. Ashalatha, N.S. Kumari and B.K. Sarojini, Eur. J. Med. Chem., 42, 425 (2007).
- X. Zhong, H.-L. Wei, W.-S. Liu, D.-Q. Wang and X. Wang, Bioorg. Med. Chem. Lett., 17, 3774 (2007).
- S. Rollas and S.G. Küçükgüzel, Molecules, 12, 1910 (2007).
- B.H. Mehta and B.S. Nagarkoti, Asian J. Chem., 14, 103 (2002).
- A.A. Tameem, B. Saad, A. Makahleh, A. Salhin and M.I. Saleh, Talanta, 82, 1385 (2010).
- X.H. Peng, X.L. Tang, W.W. Qin, W. Dou, Y.L. Guo, J.R. Zheng, W.S. Liu and D. Wang, Dalton Trans., 40, 5271 (2011).
- B.K. Rai, S.N. Vidyarthi, P. Sinha, K. Chandra Singh, S.B. Sahi and J.S. Ojha, Orient J. Chem., 28, 1365 (2012).
- B.K. Rai, S.N. Vidyarthi, P. Kumari, S. Kumari and K. Lakshmi and R. Singh, Asian J. Chem., 25, 941 (2013).
- B.K. Rai and A. Kumar, Asian J. Chem., 25, 1169 (2013).
- B.K. Rai, J. Indian Chem. Soc., 90, 1169 (2013).
- C.P. Choudhry, S.P. Sharma, C.L. Rai and B.K. Rai, Orient J. Chem., 29, 963 (2013).
- B.K. Rai and R. Kumari, Orient J. Chem., 29, 1163 (2013).
- J. Mendham, R.C. Denney, J.D. Barnes and M. Thomas, Vogel’s Text Book of Quantitative Chemical Analysis, Pearson Education (2008).
- A. Shaymal and M.R. Maurya, Synth. React. Inorg. Met. Org. Chem., 39, 974 (1961).
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- R.L. Carlin and A.J. Van Dryneveledt, Magnetic Properties of Transition Metal Compounds, Springer Verlag, New York, (1997).
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- L. Sacconi, Transition Met. Chemistry, 4, 199 (1968).
- D.N. Sathyanarayan and C.C. Patel, Indian J. Chem., 3, 360 (1967).
- P.K. Mukherjee, K. Saha, N. Giri, M. Pal and B.P. Saha, Indian J. Microbiol., 35, 320 (1995).
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References
S. Gemma, G. Kukreja, C. Fattorusso, M. Persico, M.P. Romano, M. Altarelli, L. Savini, G. Campiani, E. Fattorusso, N. Basilico, D. Taramelli, V. Yardley and S. Butini, Bioorg. Med. Chem. Lett., 16, 5384 (2006).
V. Mahalingam, N. Chitrapriya, M. Zeller and K. Natarajan, Polyhedron, 28, 1532 (2009).
K.K. Vijaya Raj, B. Narayana, B.V. Ashalatha, N.S. Kumari and B.K. Sarojini, Eur. J. Med. Chem., 42, 425 (2007).
X. Zhong, H.-L. Wei, W.-S. Liu, D.-Q. Wang and X. Wang, Bioorg. Med. Chem. Lett., 17, 3774 (2007).
S. Rollas and S.G. Küçükgüzel, Molecules, 12, 1910 (2007).
B.H. Mehta and B.S. Nagarkoti, Asian J. Chem., 14, 103 (2002).
A.A. Tameem, B. Saad, A. Makahleh, A. Salhin and M.I. Saleh, Talanta, 82, 1385 (2010).
X.H. Peng, X.L. Tang, W.W. Qin, W. Dou, Y.L. Guo, J.R. Zheng, W.S. Liu and D. Wang, Dalton Trans., 40, 5271 (2011).
B.K. Rai, S.N. Vidyarthi, P. Sinha, K. Chandra Singh, S.B. Sahi and J.S. Ojha, Orient J. Chem., 28, 1365 (2012).
B.K. Rai, S.N. Vidyarthi, P. Kumari, S. Kumari and K. Lakshmi and R. Singh, Asian J. Chem., 25, 941 (2013).
B.K. Rai and A. Kumar, Asian J. Chem., 25, 1169 (2013).
B.K. Rai, J. Indian Chem. Soc., 90, 1169 (2013).
C.P. Choudhry, S.P. Sharma, C.L. Rai and B.K. Rai, Orient J. Chem., 29, 963 (2013).
B.K. Rai and R. Kumari, Orient J. Chem., 29, 1163 (2013).
J. Mendham, R.C. Denney, J.D. Barnes and M. Thomas, Vogel’s Text Book of Quantitative Chemical Analysis, Pearson Education (2008).
A. Shaymal and M.R. Maurya, Synth. React. Inorg. Met. Org. Chem., 39, 974 (1961).
W. Kemp, Organic Spectroscopy, edn 3, Polgrave, New York; R.M. Silverstein and F.X. Webster, Spectrometric Identification of Organic Compounds, edn 6. John Wiley & Sons, p. 109 (2008).
A. Rana, R. Dinda, P. Sengupta, S. Ghosh and L.R. Falvello, Polyhedron, 21, 1023 (2002).
P.S. Mane, S.G. Shirodhar, B.R. Arbad and T.K. Chondekar, Indian J. Chem., 40A, 648 (2000).
R.L. Carlin and A.J. Van Dryneveledt, Magnetic Properties of Transition Metal Compounds, Springer Verlag, New York, (1997).
A.P. Mishra, M. Khare and S.K. Gautam, Synth. React. Inorg. Metal Org. Chem., 32, 1485 (2002).
L. Sacconi, Transition Met. Chemistry, 4, 199 (1968).
D.N. Sathyanarayan and C.C. Patel, Indian J. Chem., 3, 360 (1967).
P.K. Mukherjee, K. Saha, N. Giri, M. Pal and B.P. Saha, Indian J. Microbiol., 35, 320 (1995).
N. Nishat, S. Ahmad and R. Tansir Ahamad, J. Appl. Polym. Sci., 100, 928 (2006).