JOURNAL OF CHILEAN CHEMICAL SOCIETY

Vol 68 No 4 (2023): JCChemS
Reviews

APPLICATIONS OF ELECTROCHEMICAL SENSORS IN THE MONITORING OF CHEMICAL SPECIES IN THE ENVIRONMENT: AN ANALYSIS OF IMPACT

Juan C. Mancilla G.
UNIVERSIDAD DE TARAPACA
Published October 6, 2024
Keywords
  • Electrochemistry sensors – nanotechnology – screen printed electrodes – environment.
How to Cite
Mancilla G., J. C. (2024). APPLICATIONS OF ELECTROCHEMICAL SENSORS IN THE MONITORING OF CHEMICAL SPECIES IN THE ENVIRONMENT: AN ANALYSIS OF IMPACT. Journal of the Chilean Chemical Society, 68(4), 5989-5994. Retrieved from https://jcchems.com/index.php/JCCHEMS/article/view/2496

Abstract

In recent years, electrochemical sensors have garnered significant attention in the environmental field due to their potential to offer effective solutions for addressing the environmental challenges our planet faces, particularly in proactive environmental preservation. A particular interest has been focused on the development of electrochemical sensors due to their restricted sample volume and the potential for system miniaturization, enabling portability. Taking these aspects into consideration, this review centers on the utilization of electrochemical electrodes to acquire relevant chemical information pertaining to environmental issues. Furthermore, it will analyze how the use of nanotechnology has provided new substrate alternatives for the determination of chemically significant species in the environment. Finally, the challenges and future prospects in this field are discussed.

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References

  1. J. Wang, Analytical chemistry, 78, 4005-4018, (2006)
  2. G. Liu & Y. Lin, Analytica chimica acta, 683(1), 17-27, (2011)
  3. S. Vaddiraju, I. Tomazos, D.J. Burgess, F. C. Jain, & F. Papadimitrakopoulos, Biosensors and bioelectronics, 25(7), 1553-1565, (2010)
  4. J. Wang, Biosensors and bioelectronics, 21(10), 1887-1892, (2008)
  5. T. Liao, J. Zhang, J. Li, & S. Zhang, Sensors and Actuators B: Chemical, 255(3), 3015-3021, (2018)
  6. L. Lu, X. Xu, X. Zhang, X. He, L. Fu, L. Zhang, & C. Li, Sensors and Actuators B: Chemical, 286(1), 90-99, (2019)
  7. Y. Zhang, S. Luo, X. Zu, X. Jiang, H. Zhu, & L. Mao, Biosensors and Bioelectronics, 91(1), 188-195, (2017)
  8. Y. Wang, N. Xia, G. Wang, & C. Gong, Microchemical Journal, 156(1), 104740, (2020)
  9. A. J. Bard & L. R. Faulkner, Electrochemical methods: fundamentals and applications (Vol. 2), John Wiley & Sons, 2001
  10. R. G. Compton, Electrochemistry, Oxford University Press, 2018
  11. A. Ivaska & A. Lewenstam (Eds.), Electrochemical sensors, biosensors, and their biomedical applications, Elsevier, 2019
  12. O. K. Oyewole, J. M. Elliott, & R. H. Colby, Chemical reviews, 117(15), 10446-10519, (2017)
  13. Y. Li & X. Huang, Biosensors and Bioelectronics, 150(1), 111895, (2020)
  14. A.J. Bard, L.R. Faulkner, Electrochemical methods: fundamentals and applications, Vol. 2, John Wiley & Sons, 2001
  15. J. Wang, Analytical electrochemistry, John Wiley & Sons, 2006
  16. C.M. Brett, A.M.O. Brett (Eds.), Electroanalytical techniques, Springer Science & Business Media, 2008
  17. R.G. Compton, C.E. Banks, Understanding voltammetry, World Scientific, 2010
  18. J. Wang, A. Merkoci (Eds.), Electrochemical nanosensors, Springer Science & Business Media, 2008
  19. P.T. Kissinger, W.R. Heineman, Laboratory techniques in electroanalytical chemistry (2nd ed.), CRC Press, 1996
  20. J. Rubio, H. Aguilar, J.A. Hernan, F.J. Ávila-Camacho, J.M. Stein-Carrillo, A. Meléndez-Ramírez, Ingeniería Investigación y Tecnología, 2, 211-222, (2016)
  21. G. Marrazza, I. Chianella, M. Mascini, Environmental Biosensors, Springer, 2011
  22. Q. Hu, D.-X. Liu , InTech, 2015
  23. D.A. Robinson, S.B. Jones, I. Lebron, H. Vereecken, Vadose Zone Journal, 8, 829-843, (2009)
  24. B. Adhikari, P.P. Adhikary, R. Hernandez, Environmental Science and Pollution Research, 22, 10931-10941, (2015)
  25. Y. Alkhazneh, H.R. Bozorgi, G. Kroumpouzos, Biosystems Engineering, 96, 126-142, (2020)
  26. J. and D. Xu, Analytica Chimica Acta, 998, 1-17, (2017)
  27. X. Liu, J. Li, Electroanalysis, 15, 21, 1775-1780, (2003)
  28. X. Liu, J. Li, Analyst, 129, 576, (2004)
  29. J. Wang, J. Lu, Electrochemistry Communications, 5, 1026, (2003)
  30. T. Gan, P. Singh, Y. Liu, M. Li, Electroanalysis, 29, 1089, (2017)
  31. R. Venu, M. Ramakrishna, G. Madhavi, Analytica Chimica Acta, 912, 1, (2016)
  32. J.C.M. Gamboa, L. Cornejo, J.A. Squella, Journal of Applied Electrochemistry, 44, 1593, (2014)
  33. G. Liu, Y. Lin, Electroanalysis, 18, 319, (2006)
  34. E. Sánchez-Tirado, L. Agüí, D. Pérez-Quintanilla, TrAC Trends in Analytical Chemistry, 115, 28, (2019)
  35. M. A. Rahman, P. Kumar, K. H. Kim, Journal of Hazardous Materials, 347, 194, (2018)
  36. J. Wang, Biosensors and Bioelectronics, 21, 1887, (2006)
  37. J. C.M.Gamboa, Chil. Chem. Soc., 65, 2, (2020)

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