Copyright (c) 2017 AJC
This work is licensed under a Creative Commons Attribution 4.0 International License.
Studies on Electrochemical Behaviour of Copper(II)-Dithiocarbamate Complexes at DME: Applications to Environmental and Biological Samples
Corresponding Author(s) : Venkatasubba Naidu Nuthalapati
Asian Journal of Chemistry,
Vol. 29 No. 3 (2017): Vol 29 Issue 3
Abstract
Catalytic hydrogen current method has been explained for the sensitive and selective detection of copper(II) using ammonium 4-phenylpiperazine-1-dithiocarbamate (Amm 4-PP-DTC) and ammonium 4-benzylpiperidine-1-dithiocarbamate (Amm 4-BP-DTC) in different environmental and biological matrices. It was mainly depends on the interaction of copper(II) with 4-Amm 4-PP-DTC and Amm 4-BP-DTC in background electrolyte (NH4Cl-NH4OH) medium at pH 6.6. The pronounced parabolic shaped peaks were observed at -0.31 V and -0.48 V vs. SCE, respectively due to the catalytic hydrogen currents produced from the dithiocarbamate-metal complexes. Then after, catalytic hydrogen currents were recorded using D.C polarography. pH effect, background electrolyte (NH4Cl-NH4OH) effect and dithiocarbamates and copper(II) ion effects were optimized in this study. The present developed method was fruitfully applied to analyze copper(II) in various sample of environmental and biological importance. The recovery percentages obtained from this study were found to be 95-99 % and comparable with AAS method.
Keywords
Download Citation
Endnote/Zotero/Mendeley (RIS)BibTeX
- S.P. Ananda and O. Donald, Trace Elem. Human Health Diseases, 1, (1976).
- G.L. Eichhorn, Inorganic Bio-Chemistry, Elsevier Scientific Publishing Company, New York,(1975).
- R.A. Romeno, J.A. Navarro, B. Rodriguez, R. Garlica, O.E. Parra and T. Grandillo, Trace Elem. Med., 7, 176 (1970).
- J. Shen, S. Chen and C. Zhang, Shanghai Yixue, 14, 603 (1991).
- P.A. Waldravens, Clin. Chem., 26, 185 (1980).
- I.H. Scheinberg and I. Sternleib, Pharmacol. Rev., 12, 204 (1933).
- E.J. Underwood, Trace Elements in Human and Animal Nutrition, Academic Press, New York, edn 4 (1979).
- P.L. Malvankar and V.M. Shinde, Analyst, 116, 1081 (1991).
- P.M. Rao and S.B. Rao, Indian J. Chem., 9, 1014 (1971).
- P.M. Rao and S.B. Rao, Indian J. Chem., 11, 1160 (1973).
- D. Rekha, N.Y. Sreedhar and P.R. Prasad, Global J. Sci. Front. Res., 10, 21 (2010).
- Z. Huang and X. Du, Huanjing Huaxue, 7, 72 (1988); Chem Abstr.,109, 236563 (1988).
- Y. Guiyou, X. Jiaoyun and W. Yan, Yijin Fenxi, 19, 37 (1989).
- Z. Zhengaqi and Z.S. Zong, Fenxi Shiyanshi, 11, 21 (1976).
- J. Biernat and A. Syzmaszek, Bull. Acad Pol. Sci., Ser. Sci. Chim., 24, 133 (1976).
- B. Johansson and S. Wendsjo, J. Electroanal. Chem. Interfacial Electrochem., 167, 165 (1984).
- S. Lei, Fenxi Shiyanshi, 7, 32 (1988).
- Z. Zhao and Y. Wang, Huaxue Xuebao, 41, 761 (1983).
- R. Palaniappan and V. Revathi, J. Indian Coun. Chem, 4, 1 (1988).
- K. Saraswathi and N.V.S. Naidu, Chem. Environ. Res., 8, 271 (1999).
- K. Saraswathi, N.V.S. Naidu, K.P. Naidu and N. Krishnaiah, Anal. Chem.: An Indian J., 7, 279 (2008).
- S. Wang, L. Du, A. Zhang and D. Liu, Anal. Lett., 31, 1757 (1998).
- S. Kanchi, P. Krishnamurthy, K. Saraswathi and N.V. Naidu, Chem. Technol.: An Indian J., 6, 6 (2011).
- S. Kanchi, T. Niranjan, K. Saraswathi and N.V. Naidu, Anal. Chem: An Indian J., 10, 231 (2011).
- S. Kanchi, M. Sulochana, K.B. Naidu, K. Saraswathi and N.V. Naidu, Food Anal. Methods, 4, 453 (2011).
- S. Kanchi, P. Singh, M.I. Sabela, K. Bisetty and N.V. Naidu, Int. J. Electrochem. Sci., 8, 4260 (2013).
- S. Kanchi, P. Anuradha, B.N. Kumar, K. Gopalakrishnam and P. Ravi, Arabian J. Chem., (2012); doi:10.1016/j.arabjc.2012.08.001.
- S. Kanchi, P. Singh and K. Bisetty, Arab. J. Chem., 7, 11 (2014).
- S. Kanchi, M.I. Sabela, P. Singh and K. Bisetty, Arabian J. Chem., (2013); doi:10.1016/i.arabjc.2013.07.061.
- T. Niranjan, S. Kanchi, K. Bisetty and N.V. Naidu, Asian J. Chem., 27, 3598 (2015).
References
S.P. Ananda and O. Donald, Trace Elem. Human Health Diseases, 1, (1976).
G.L. Eichhorn, Inorganic Bio-Chemistry, Elsevier Scientific Publishing Company, New York,(1975).
R.A. Romeno, J.A. Navarro, B. Rodriguez, R. Garlica, O.E. Parra and T. Grandillo, Trace Elem. Med., 7, 176 (1970).
J. Shen, S. Chen and C. Zhang, Shanghai Yixue, 14, 603 (1991).
P.A. Waldravens, Clin. Chem., 26, 185 (1980).
I.H. Scheinberg and I. Sternleib, Pharmacol. Rev., 12, 204 (1933).
E.J. Underwood, Trace Elements in Human and Animal Nutrition, Academic Press, New York, edn 4 (1979).
P.L. Malvankar and V.M. Shinde, Analyst, 116, 1081 (1991).
P.M. Rao and S.B. Rao, Indian J. Chem., 9, 1014 (1971).
P.M. Rao and S.B. Rao, Indian J. Chem., 11, 1160 (1973).
D. Rekha, N.Y. Sreedhar and P.R. Prasad, Global J. Sci. Front. Res., 10, 21 (2010).
Z. Huang and X. Du, Huanjing Huaxue, 7, 72 (1988); Chem Abstr.,109, 236563 (1988).
Y. Guiyou, X. Jiaoyun and W. Yan, Yijin Fenxi, 19, 37 (1989).
Z. Zhengaqi and Z.S. Zong, Fenxi Shiyanshi, 11, 21 (1976).
J. Biernat and A. Syzmaszek, Bull. Acad Pol. Sci., Ser. Sci. Chim., 24, 133 (1976).
B. Johansson and S. Wendsjo, J. Electroanal. Chem. Interfacial Electrochem., 167, 165 (1984).
S. Lei, Fenxi Shiyanshi, 7, 32 (1988).
Z. Zhao and Y. Wang, Huaxue Xuebao, 41, 761 (1983).
R. Palaniappan and V. Revathi, J. Indian Coun. Chem, 4, 1 (1988).
K. Saraswathi and N.V.S. Naidu, Chem. Environ. Res., 8, 271 (1999).
K. Saraswathi, N.V.S. Naidu, K.P. Naidu and N. Krishnaiah, Anal. Chem.: An Indian J., 7, 279 (2008).
S. Wang, L. Du, A. Zhang and D. Liu, Anal. Lett., 31, 1757 (1998).
S. Kanchi, P. Krishnamurthy, K. Saraswathi and N.V. Naidu, Chem. Technol.: An Indian J., 6, 6 (2011).
S. Kanchi, T. Niranjan, K. Saraswathi and N.V. Naidu, Anal. Chem: An Indian J., 10, 231 (2011).
S. Kanchi, M. Sulochana, K.B. Naidu, K. Saraswathi and N.V. Naidu, Food Anal. Methods, 4, 453 (2011).
S. Kanchi, P. Singh, M.I. Sabela, K. Bisetty and N.V. Naidu, Int. J. Electrochem. Sci., 8, 4260 (2013).
S. Kanchi, P. Anuradha, B.N. Kumar, K. Gopalakrishnam and P. Ravi, Arabian J. Chem., (2012); doi:10.1016/j.arabjc.2012.08.001.
S. Kanchi, P. Singh and K. Bisetty, Arab. J. Chem., 7, 11 (2014).
S. Kanchi, M.I. Sabela, P. Singh and K. Bisetty, Arabian J. Chem., (2013); doi:10.1016/i.arabjc.2013.07.061.
T. Niranjan, S. Kanchi, K. Bisetty and N.V. Naidu, Asian J. Chem., 27, 3598 (2015).