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Carbon Paste Electrode Modified by Dibenzo 18-crown-6 for the Determination of Pb in Carrot Using Differential Pulse Voltammetry

Year 2023, Volume: 10 Issue: 4, 941 - 952, 11.11.2023
https://doi.org/10.18596/jotcsa.1120078

Abstract

In this research, the modification of carbon paste electrode (CPE) using dibenzo 18-crown-6 was carried out to detect Pb level in carrot. The purpose of this electrode modification is to increase the sensitivity of the measurement. The optimized parameters were scan rate, composition of dibenzo 18-crown-6 in carbon paste, and supporting electrolyte. Measurements were validated by determining the linear concentration range, detection limit (LoD), quantification limit (LoQ), repeatability, selectivity, and recovery. At the best measurement conditions, the modified CPE (CPE-Dbc) was applied to determine Pb in carrot. The optimum measurements conditions were obtained the optimum concentration of crown ether in carbon paste was 0.8%, the scan rate using CPE at 15 mV/s, increased to 20 mV/s, and H2SO4 solution as supporting electrolyte. The linear concentration was found in the range of 5-100 µg/L using CPE and became wider to 5-2000 µg/L using CPE-Dbc. The values of LoD and LoQ measurement using CPE were 0,3575 µg/L and 0,3583 µg/L, and decreased to 0,1265 µg/L and 0,1266 µg/L using CPE-Dbc. CPE and CPE-Dbc had good precision with Horwitz ratio values were 0,2231 and 0,2183, which is smaller than two. The percentage of recovery of Pb in the mixture of standard and sample solutions was (88,97 ± 2,76)%. The presence of Cu, Cd and Na in the solution did not interfere the measurement of Pb. The concentration of Pb in carrot sample was (1,8423 ± 0,0002) mg/kg, which was higher than the acceptable concentration according to SNI No. 7387:2009, which is 0,5 mg/kg.

References

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  • 2. Pizarro J, Segura R, Tapia D, Navarro F, Fuenzalida F, dan Aguirre MJ. Inexpensive and green electrochemical sensor for the determination of Cd (II) and Pb(II) by square wave anodic stripping voltammetry in bivalve mollusks. Food Chemistry. 2020 August 15; 321: 1-8. <DOI>.
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  • 4. Guo Z, Li DD, Luo XK, Li YH, Zhao QN, LI MM, Zhao YT, Sun TS, dan Ma C. Simultaneous determination of trace Cd(II), Pb(II) and Cu(II) by differential pulse anodic stripping voltammetry using a reduced graphene oxide-chitosan/poly-l-lysine nanocomposite modified glassy carbon electrode. Journal of Colloid and Interface Science. 2017 March 15; 490: 11-12. <DOI>.
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  • 15. Jackson DT, Peter N, Nelson PT, Booysen IN. Lead Ion Selective Electrodes from Dibenzo-18-crown-6 derivatives: An exploratory study. Journal of Molecular Structure. 2021 March 5;1227: 1-27. <DOI>.
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  • 22. Seltman HJ. Experimental design for the behavioral and social sciences: ANOVA one way. 1st ed. Pittsburgh: Carnegie Mellon University. 2012.
  • 23. Association of Official Analytical Chemist (AOAC). Official methods of analysis of AOAC international. 21st ed. MD Gaithersburg: AOAC International. 2019. ISBN: 0935584544 9780935584547.
  • 24. Buck RP, Lindner E. Recommendation for nomenclature of ion selective electrodes, Pure and Application Chemistry. 2009 January 1;66: 2527-2536. <DOI>.
  • 25. Umezawa Y, Bulhmann P, Umezawa K, Tohda K, Amemiya S. Potentimetric selectivity coefficients of ion-selective electrodes. Pure and Applied Chemistry. 2009 January 1; 72(10):1851-2082. <DOI>.
  • 26. Balal K, Mohammad H, Baharer B, Ali B, Maryam H, Morgan Z. Zeolite nanoparticle modified carbon paste electrode as biosensor for determination of dopamine and tryptophan. Journal of the Chinese Chemical Society. 2013 September 25;56(4): 789-796. <DOI>.
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Year 2023, Volume: 10 Issue: 4, 941 - 952, 11.11.2023
https://doi.org/10.18596/jotcsa.1120078

Abstract

References

  • 1. Wang J. Analytical electrochemistry. 2nd ed. New York: Wiley Publisher. 2000 ISBN 0471-28272-3.
  • 2. Pizarro J, Segura R, Tapia D, Navarro F, Fuenzalida F, dan Aguirre MJ. Inexpensive and green electrochemical sensor for the determination of Cd (II) and Pb(II) by square wave anodic stripping voltammetry in bivalve mollusks. Food Chemistry. 2020 August 15; 321: 1-8. <DOI>.
  • 3. Dahaghin, Z, Kilmartin PA, dan Mousavi HZ. Simultaneous determination of lead(II) and cadmium(II) at a glassy carbon electrode modified with GO@Fe3O4@ benzothiazole-2-carboxaldehyde using square wave anodic stripping voltammetry. Journal of Molecular Liquids. 2018 January; 249: 1125–1132. <DOI>.
  • 4. Guo Z, Li DD, Luo XK, Li YH, Zhao QN, LI MM, Zhao YT, Sun TS, dan Ma C. Simultaneous determination of trace Cd(II), Pb(II) and Cu(II) by differential pulse anodic stripping voltammetry using a reduced graphene oxide-chitosan/poly-l-lysine nanocomposite modified glassy carbon electrode. Journal of Colloid and Interface Science. 2017 March 15; 490: 11-12. <DOI>.
  • 5. Palisoc S, Estioko LCD, Naticidad M. Voltammetric determination of lead and cadmium in vegetables by graphene paste electrode modified with activated carbon from coconut husk. Mater Res Express. 2018 July 27; 5(8): 1-10. <DOI>.
  • 6. Wu KH, Lo HM, Wang JC, Yu SY, Yan BD. Electrochemical detection of heavy metal pollutant using crosslinked chitosan/carbon nanotubes thin film electrodes. Materials Express. 2017; 7(1): 15–24. <DOI>.
  • 7. Palisoc S, Lee ET, Natividad M, Racines L. Silver nanoparticle modified graphene paste electrode for the electrochemical detection of lead, cadmium and copper. International Journal of Electrochemical Science. 2018;13: 8854 – 8866. <DOI>.
  • 8. Blaise N, Vale´ry HG, Maallah R, Oubaouz M, Justin BTD, Ofudje EA, Chtaini A. Simultaneous electrochemical detection of pb and cd by carbon paste electrodes modified by activated clay. Journal of Analytical Methods in Chemistry. 2022 January 19;2022: 1-9. <DOI>.
  • 9. Ifguis O, Moutcine A, Laghlimi C, Ziat Y, Bouhdadi R, Chtaini A, Moubarik A, Mbarki M. Biopolymer-modified carbon paste electrode for the electrochemical detection of Pb(II) in water. Journal of Analytical Methods in Chemistry. 2022 January 31;2022: 1-9. <DOI>.
  • 10. Serrano N, Calabuig AG, Valle MD. Crown ether-modified electrodes for the simultaneous stripping voltammetric determination of Cd(II), Pb(II) and Cu(II). Talanta. 2015 January 31; 138:1-30. <DOI>.
  • 11. Bradshaw JS, Izzat RM. Crown Ethers: The search for selective ion ligating agents. Account of Chemical Research. 1997 August 13;30:338-345. <DOI>.
  • 12. Keawkim K, Chuanuwatanakul S, Chailapakul O. Determination of lead and cadmium in rice samples by sequential injection/anodic stripping voltammetry using a bismuth film/crown ether/nafion modified screen- printed carbon electrode. Food Control. 2013 May 1; 31(1):14-21. <DOI>.
  • 13. Simionca AA, Pinteala M. Crown ether-based structures for sensitive electrochemical detection Ion. High Performance Polymers. 2015 July 6;27(5): 669–675 2015. <DOI>.
  • 14. Simionca IM, Arvinte A, Ardeleanu R, et al. Siloxane-crown ether polyamide based electrode for electrochemical determination of lead(II) in aqueous solution. Eletroanalysis. 2012; 24(10): 1995–2004. <DOI>.
  • 15. Jackson DT, Peter N, Nelson PT, Booysen IN. Lead Ion Selective Electrodes from Dibenzo-18-crown-6 derivatives: An exploratory study. Journal of Molecular Structure. 2021 March 5;1227: 1-27. <DOI>.
  • 16. Iyabu H. Pengantar elektrode selektif ion (ESI). 1st ed. Gorontalo: UNG Press. 2014.
  • 17. Hermouche L, Aqil Y, Abbi K, Hamdouni YE, Ouanji F, Hajjaji SE, Mahi ME, Lotfi EM, Labjar N. Eco-friendly modified carbon paste electrode by bigarreau burlat kernel shells for simultaneous trace detection of cadmium, lead, and copper. Chemical Data Collections. 2021 April;32: 1-17. <DOI>
  • 18. Agustina T. Kontaminasi logam berat pada makanan dan dampaknya pada kesehatan. Jurnal Teknobuga. 2014; 1(1) 53-65. <DOI>.
  • 19. Vianne MSA, Hanani Y, Lanang H. Analisis risiko kesehatan lingkungan kandungan kadmium (cd) dalam ikan bandeng di kawasan tambak lorok semarang. Jurnal Kesehatan Masyarakat. 2017;5(5) 724-732. <URL>.
  • 20. Miller JN, Miller JC. Statistics and chemometrics for analytical chemistry. 6th ed. Harlow: Pearson Education Limited. 2010. ISBN: 9780273730439 0273730436.
  • 21. Horwitz, Albert. The Horwitz Ratio (HorRat): A Useful Index of Method Performance with Respect to Precision. Journal Of AOAC International. 2006; 89(4). <DOI>.
  • 22. Seltman HJ. Experimental design for the behavioral and social sciences: ANOVA one way. 1st ed. Pittsburgh: Carnegie Mellon University. 2012.
  • 23. Association of Official Analytical Chemist (AOAC). Official methods of analysis of AOAC international. 21st ed. MD Gaithersburg: AOAC International. 2019. ISBN: 0935584544 9780935584547.
  • 24. Buck RP, Lindner E. Recommendation for nomenclature of ion selective electrodes, Pure and Application Chemistry. 2009 January 1;66: 2527-2536. <DOI>.
  • 25. Umezawa Y, Bulhmann P, Umezawa K, Tohda K, Amemiya S. Potentimetric selectivity coefficients of ion-selective electrodes. Pure and Applied Chemistry. 2009 January 1; 72(10):1851-2082. <DOI>.
  • 26. Balal K, Mohammad H, Baharer B, Ali B, Maryam H, Morgan Z. Zeolite nanoparticle modified carbon paste electrode as biosensor for determination of dopamine and tryptophan. Journal of the Chinese Chemical Society. 2013 September 25;56(4): 789-796. <DOI>.
  • 27. Harvey D. Modern analyical chemistry 1th ed. New York: Mc Graw Hill.2000. ISBN: ISBN 0072375477.
There are 27 citations in total.

Details

Primary Language English
Subjects Analytical Chemistry
Journal Section RESEARCH ARTICLES
Authors

Irdhawati Irdhawati 0000-0002-8398-6287

Ayu Jyostisya Yotirani Arya Wijana This is me

Emmy Sahara This is me

Manuntun Manurung

Publication Date November 11, 2023
Submission Date May 24, 2022
Acceptance Date August 17, 2023
Published in Issue Year 2023 Volume: 10 Issue: 4

Cite

Vancouver Irdhawati I, Wijana AJYA, Sahara E, Manurung M. Carbon Paste Electrode Modified by Dibenzo 18-crown-6 for the Determination of Pb in Carrot Using Differential Pulse Voltammetry. JOTCSA. 2023;10(4):941-52.