Electrochemical measurements of ascorbic acid based on graphite screen printed electrode modified with La3+/Co3O4 nanocubes transducer
DOI:
https://doi.org/10.5599/jese.643Keywords:
Ascorbic acid, electrochemical characterization, La3 /Co3O4 nanocubes, graphite screen printed electrode, voltammetryAbstract
Electrochemical characterization of ascorbic acid oxidation on a graphite screen printed electrode (SPE) modified with La3+/Co3O4nanocubes is performed by applying cyclic voltammetry (CV), chronoamperometry (CHA), and differential pulse voltammetry (DPV) techniques. Synthesized La3+/Co3O4nanocubes for SPE modification, La3+/Co3O4/SPE, enhance the ascorbic acid electrooxidation kinetics by reducing the anodic overpotential. Excellent La3+/Co3O4/SPE electrochemical properties provide sensitive ascorbic acid voltammetric determination with low detection limit, good stability and quick response towards electrooxidation of ascorbic acid as compared to bare SPE. Under optimized conditions, DPV current demonstrates a linear response for ascorbic acid over a concentration range of 1.0 to 900.0 mM with a correlation coefficient of 0.9997, and detection limit (LOD) (S/N = 3) = 0.3 mM. The proposed procedure offers a potential application for producing the sensor with good repeatability. Also, fast response of fabricated sensor can allow a real-time analysis of real samples.
Downloads
References
H. Beitollahi, S. Mohammadi, Chinese Journal of Catalysis 34 (2013) 1098-1104.
M. Noroozifar, M. Khorasani-Motlagh, Turkish Journal of Chemistry 27 (2003) 717-722.
H. Beitollahi, S. Tajik, H. Parvan, H. Soltani, A. Akbari, M. H. Asadi, Analytical and Bioanalytical Electrochemistry 6 (2014) 54-66.
Z. Dursun, L. Pelit, I. Taniguchi, Turkish Journal of Chemistry 33 (2009) 223-231.
P. Ramesh, S. Sampath, Electroanalysis 16 (2004) 866-869.
M. G. Gioia, P. Andreatta, S. Boschetti, Journal of Pharmaceutical and Biomedical analysis 48 (2008) 331-339.
T. Kleszczewski, E. Kleszczewska, Journal of Pharmaceutical and Biomedical Analysis 29 (2002) 755-759.
F. Garkani Nejad, H. Beitollahi, S. Shakeri, Analytical and Bioanalytical Electrochemistry 8 (2016) 318-328.
T. Wu, Y. Guan, J. Ye, Food Chemistry 100 (2007) 1573-1579.
L. Fraisse, M. C. Bonnet, J. P. de Farcy, C. Agut, D. Dersigny, A. Bayol, Analytical Biochemistry 309 (2002) 173-179.
N. Anastos, N. W. Barnett, B. J. Hindson, C. E. Lenehan, S. W. Lewis, Talanta 64 (2004) 130-134.
E. Szantai, A. Szilagyi, A. Guttman, M. Sasvari-Szekely. Z. Ronai, Journal of Chromatography A 1053 (2004) 241-245.
K. E. Hubbard, A. Wells, T. S. Owens, M. Tagen, C. H. Fraga, C. F. Stewart, Biomedical Chromatography 24 (2010) 626-631.
H.R. Naderi, P. Norouzi, M.R. Ganjali, H. Gholipour-Ranjbar, Powder Technology 302 (2016) 298-308.
U. Anik, M. Cubukcu, Turkish Journal of Chemistry 32 (2008) 711-719.
S.A. Mozaffari, H.S. Amoli, S. Simorgh, R. Rahmanian, Electrochimica Acta 184 (2015) 475-482.
M. Algarra, A. González-Calabuig, K. Radotić, D. Mutavdzić, C.O. Ania, J.M. Lázaro-Martínez, J. Jiménez-Jiménez, E. Rodríguez-Castellón, M. del Valle, Talanta 178 (2018) 679-685.
J. T. Mehrabad, M. Aghazadeh, M. G. Maragheh, M. R. Ganjali, P. Norouzi, Materials Letters 184 (2016) 223-226.
Z. Wei, Y. Yang, X. Xiao, W. Zhang, J. Wang, Sensors and Actuators B: Chemical 225 (2018) 805-809.
H. Beitollahi, H. Karimi-Maleh, H. Khabazzadeh, Analytical Chemistry 80 (2008) 9848-9851.
D. Ragupathy, A. I. Gopalan, K. P. Lee, Sensors and Actuators B: Chemical 143 (2010) 696-703.
D. Wen, S. J. Guo, S. J. Dong, E. K. Wang, Biosensors and Bioelectronics 26 (2010) 1056-1061.
M. M. Foroughi, H. Beitollahi, S. Tajik, A. Akbari, R. Hosseinzadeh, International Journal of Electrochemical Science 9 (2014) 8407-8421.
H. Gholipour-Ranjbar, M. R. Ganjali, P. Norouzi, H. R. Naderi, Journal of Materials Science: Materials in Electronics 27 (2016) 10163-10172.
H. Beitollahi, S. Tajik, Environmental Monitoring and Assessment 187 (2015) 257-267.
H. Gholipour-Ranjbar, M. R. Ganjali, P. Norouzi, H. R. Naderi, Ceramics International 42 (2016) 12097-12104.
I. Karimzadeh, M. Aghazadeh, M. R. Ganjali, P. Norouzi, S. Shirvani-Arani, T. Doroudi, P. H. Kolivand, S. A. Marashi, D. Gharailou, Materials Letters 179 (2016) 5-8.
H. Soltani, H. Beitollahi, A.H. Hatefi-Mehrjardi, S. Tajik, M. Torkzadeh-Mahani, Analytical and Bioanalytical Electrochemistry 6 (2014) 67-79.19
M. Aghazadeh, A. Bahrami-Samani, D. Gharailou, M. G. Maragheh, M. R. Ganjali, P. Norouzi, Journal of Materials Science: Materials in Electronics 27 (2016) 11192-11200.
M. R. Ganjali, H. Salimi, S. Tajik, H. Beitollahi, M. Rezapour, B. Larijani, International Journal of Electrochemical Science 12 (2017) 5243-5253.
M. R. Ganjali, H. Beitollahi, R. Zaimbashi, S. Tajik, M. Rezapour, B. Larijani, International Journal of Electrochemical Science 13 (2018) 2519-2529.
Z. W. Pan, Z. R. Dai, Z. L. Wang, Science 291 (2001) 1947-1949.
H. Mahmoudi-Moghaddam, S. Tajik, H. Beitollahi, Food Chemistry 286 (2019) 191-196.
H. Beitollahi, Z. Dourandish, S. Tajik, M. R. Ganjali, P. Norouzi, F. Faridbod, Journal of Rare Earths 36 (2018) 750-757.
J. Xu, F. Huo, Y. Zhao, Y. Liu, Q. Yang, Y. Cheng, S. Min, Z. Jin, Z. Xiang, International Journal of Hydrogen Energy 43 (2018) 8674-8682.
A. J. Bard, L. R. Faulkner, Electrochemical Methods Fundamentals and Applications, second ed., Wiley, New York, 2001.
H. Beitollahi, M. Mazloum Ardakani, H. Naeimi, B. Ganjipour, Journal of Solid State Electrochemistry 13 (2009) 353-363.
Downloads
Published
How to Cite
Issue
Section
License
Articles are published under the terms and conditions of the
Creative Commons Attribution license 4.0 International.