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A Simple Spectrophotometric Determination of Nickel(II) Using 1-Nitroso-2-naphthol in Anionic Micellar Solution
Corresponding Author(s) : Ghulam Abbas Shar
Asian Journal of Chemistry,
Vol. 27 No. 6 (2015): Vol 27 Issue 6
Abstract
A simple rapid new spectrophotometric method has been developed for the determination of nickel at trace level using 1-nitroso-2-naphthol as complexing reagent in presence of anionic aqueous micellar solution surfactant 1 % sodium dodecyl sulphate. 1-Nitroso-2-naphthol reacts with nickel(II) to form bis(1-nitroso-2-naphtholato) nickel complex. The use of micellar system replaces the previous solvent extraction steps while enhancing the sensitivity, selectivity and the molar absorptivity which reduces the cost and toxicity. The average molar absorption coefficient and Sandell's sensitivity was found to be 1.02 × 104 L mol-1 cm-1 and 5.7 ng cm-2 at lmax 471.6 nm. Linear calibration graph was obtained over the concentration range 0.25-4.0 μg mL-1, the stoichiometric composition of the chelate was 1:2 (Ni:[NNPh]2. The developed method was successfully applied for the determination of nickel from alloy and real samples.
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References
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U. Ermler, W. Grabarse, S. Shima, M. Goubeaud and R.K. Thauer, Curr. Opin. Struct. Biol., 8, 749 (1998); doi:10.1016/S0959-440X(98)80095-X.
F. Dole, Medina, C. More, R. Cammack, P. Bertrand and B. Guigliarelli, Biochemistry, 35, 16399 (1996); doi:10.1021/bi961662x.
R.K. Andrews, R.L. Blakeley and B. Zerner, in ed.: J.R. Lancaster, The Bioinorganic Chemistry of Nickel, VCH Publishers New York, U.S.A. p. 41 (1988).
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M.J. Ahmed, T. Zannat and Z. Fatima, Am. Chem. Sci. J., 4, 481 (2014); doi:10.9734/ACSJ/2014/5829.
M. Arvand, S. Abolghasemi and M. Zanjanchi, J. Anal. Chem., 62, 342 (2007); doi:10.1134/S1061934807040089.
F. Jumean, M. El-Dakiky, A. Manassra, M. Kareem, M. Alhaj and M. Khamis, Am. J. Anal. Chem., 5, 1 (2014); doi:10.4236/ajac.2014.51001.
C. Sabel, J. Neureuther and S. Siemann, Anal. Biochem., 397, 218 (2010); doi:10.1016/j.ab.2009.10.037.
H. Pouretedal, P. Sononi, M. Keshavarz and A. Semnani, Chemistry, 18, 23 (2009).
V.S. Anusuya Devi and V.K. Reddy, Int. J. Anal. Chem., Article ID 981758 (2012); doi: 10.1155/2012/981758.
K. Zarei, M. Atabati and M. Safaei, J. Chinese Chem. Soc., 54, 1395 (2007); doi:10.1002/jccs.200700199.
H. Khan, M.J. Ahmed and M.I. Bhanger, Spectroscopy, 20, 285 (2006); doi:10.1155/2006/269568.
G.A. Shar and G.A. Soomro, Nucleus, 44, 33 (2007).
H. Khan, M.J. Ahmed and M.I. Bhanger, Anal. Sci., 23, 193 (2007); doi:10.2116/analsci.23.193.
V. Kaur, A.K. Malik and N. Verma, Anal. Lett., 40, 2360 (2007); doi:10.1080/00032710701576049.
S.H. Guzar and Q.H. Jin, Chem. Res. Chin. Univ., 24, 143 (2008); doi:10.1016/S1005-9040(08)60030-6.
H. Eskandari, A.G. Saghseloo and M.A. Chamjangali, Turk. J. Chem., 30, 49 (2006).
M.A. Chamjangali, G. Bagherian and G. Azizi, Spectrochim. Acta A, 62, 189 (2005); doi:10.1016/j.saa.2004.12.026.
N. Veerachalee, P. Taweema and A. Songsasen, Kas J. Nat. Sci., 41, 675 (2007).
R. Soomro, M.J. Ahmed, N. Memon and H. Khan, Anal. Chem. Insights, 3, 75 (2008).
B.K. Pal and B. Choudhury, Mikrochim. Acta, 83, 121 (1984); doi:10.1007/BF01237266.
D.D Perrin and B. Dempsey, Buffers for pH and Metal Ion Control, Chapman & Hall Ltd., London, pp. viii-176 (1974).
H. Eskandari, Bull. Korean Chem. Soc., 25, 1137 (2004); doi:10.5012/bkcs.2004.25.8.1137.
H. Eskandari and A.G. Saghseloo, Anal. Sci., 19, 1513 (2003); doi:10.2116/analsci.19.1513.
K. Uchiyama, K. Ohsawa, Y. Yoshimura, J. Minowa, T. Watanabe and K. Imaeda, Anal. Sci., 8, 655 (1992); doi:10.2116/analsci.8.655.
H. Abdollahi, M. S. Panahi, M. R. Khoshayand, Iran. J. Pharm. Res., 4, 207 (2003).
H.B. Singh, N.K. Agnihotri and V.K. Singh, Talanta, 48, 623 (1999); doi:10.1016/S0039-9140(98)00286-0.
H.H. Jaffe and M. Orchin, Theory and Applications of Ultraviolet Spectroscopy, John Wiley & Sons Inc., New York, p. 18 (1962)..
M.A. Omary, O. Elbjeirami, C.S.P. Gamage, K.M. Sherman and H.V.R. Dias, Inorg. Chem., 48, 1784 (2009); doi:10.1021/ic8021326.
M. Thongngam and D.J. McClements, Langmuir, 21, 79 (2005); doi:10.1021/la048711o.
M. Vincekovic, M. Bujan, I. Šmit and N. Filipović-Vinceković, Colloids Surf. A, 255, 181 (2005); doi:10.1016/j.colsurfa.2004.12.047.
Q. Gan, T. Wang, C. Cochrane and P. McCarron, Colloids Surf. B, 44, 65 (2005); doi:10.1016/j.colsurfb.2005.06.001.
M.I. Toral, N. Lara, J. Gomez and P. Richter, Anal. Lett., 35, 153 (2002); doi:10.1081/AL-120002368.
J. Yun, Talanta, 52, 893 (2000); doi:10.1016/S0039-9140(00)00441-0.
N.K. Agnihotri, V.K. Singh and H.B. Singh, Talanta, 45, 331 (1997); doi:10.1016/S0039-9140(97)00137-9.
A. Safavi and H. Abdollahi, Microchem. J., 69, 69 (2001); doi:10.1016/S0026-265X(01)00082-0.