Electrochemical Detection of Trace Amount of Arsenic (III) at Glassy Carbon Electrode Modified with Au/Fe3O4 Nanocomposites

Author:

Toor Sehaspreet Kaur,Devi Pooja,Bansod Baban Kumar S.

Publisher

Elsevier BV

Reference26 articles.

1. Arsalani, N., Fattahi, H., Nazarpoor, M. 2010. Synthesis and characterization of PVP-functionalized superparamagnetic Fe3O4 nanoparticles as an MRI contrast agent. Exp Polym Lett, 4(6), 329-338.

2. Basu, A., Saha, D., Saha, R., Ghosh, T., Saha, B. 2014. A review on sources, toxicity and remediation technologies for removing arsenic from drinking water. Research on Chemical Intermediates 40(2), 447-485.

3. Boevski, I., Daskalova, N. 2007. A method for determination of toxic and heavy metals in suspended matter from natural waters by inductively coupled plasma atomic emission spectrometry (ICP-AES). Part I. Determination of toxic and heavy metals in surface river water samples. J Univ Chem Tech Metallurgy 42, 419-26.

4. Daud, N., Yusof, N.A., Tee, T.W., Abdullah, A.H. 2012. Electrochemical sensor for As (III) utilizing CNTs/leucine/nafion modified electrode. Int. J. Electrochem. Sci, 7, 175-185.

5. Ding, H., Wang, J., Dorsey, J.G., Caruso, J.A. 1995. Arsenic speciation by micellar liquid chromatogrpahy with inductively coupled plasma mass spectrometric detection. Journal of Chromatography A, 694(2), 425-431.

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