Fast and sensitive metronidazole determination by means of voltammetry on renewable amalgam silver based electrode without the preconcentration step

Application of cyclic renewable amalgam silver-based electrode (Hg(Ag)FE) for sensitive metronidazole detection by the differential pulse voltammetry (DPV) is described. The unique properties of the Hg(Ag)FE such as the relative large surface area and its fast and very simple renewal were fully util...

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Main Authors: Piech Robert, Smajdor Joanna, Paczosa-Bator Beata, Rumin Martyna
Format: Article
Language:English
Published: Serbian Chemical Society 2017-01-01
Series:Journal of the Serbian Chemical Society
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/0352-5139/2017/0352-51391700052P.pdf
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spelling doaj-d5387718d56549d98644fe06ce33cdcf2020-11-24T23:02:48ZengSerbian Chemical Society Journal of the Serbian Chemical Society0352-51391820-74212017-01-01827-887989010.2298/JSC160529052P0352-51391700052PFast and sensitive metronidazole determination by means of voltammetry on renewable amalgam silver based electrode without the preconcentration stepPiech Robert0Smajdor Joanna1Paczosa-Bator Beata2Rumin Martyna3University of Science and Technology, Faculty of Materials Science and Ceramics, Kraków, PolandUniversity of Science and Technology, Faculty of Materials Science and Ceramics, Kraków, PolandUniversity of Science and Technology, Faculty of Materials Science and Ceramics, Kraków, PolandUniversity of Science and Technology, Faculty of Materials Science and Ceramics, Kraków, PolandApplication of cyclic renewable amalgam silver-based electrode (Hg(Ag)FE) for sensitive metronidazole detection by the differential pulse voltammetry (DPV) is described. The unique properties of the Hg(Ag)FE such as the relative large surface area and its fast and very simple renewal were fully utilized for sensitive measurements. Compared with the classical hanging mercury drop electrode (HMDE), the renewable Hg(Ag)FE significantly increases the reduction peak current of metronidazole because of its large surface area. The effects of various factors for the metronidazole determination such as: pulse height and width, step potential, surface area of the working electrode, and basic electrolyte composition are optimized. The obtained calibration graph is linear from 0.1 (17 μg L-1) to 2 μM (342 μg L-1) with correlation coefficient 0.999. For the Hg(Ag)FE with the surface area of 10.1 mm2 the limit of detection (LOD) is 20 nM (3.4 μg L-1). The repeatability of the method at a concentration of the analyte of 0.5 μM (5.6 μg L−1), expressed as relative standard deviation (RSD) is 2.1 % (n = 7). The proposed method was successfully applied and confirmed by studying recovery of metronidazole from spiked samples.http://www.doiserbia.nb.rs/img/doi/0352-5139/2017/0352-51391700052P.pdfmetronidazoledrugsamalgam film electrodesvoltammetry
collection DOAJ
language English
format Article
sources DOAJ
author Piech Robert
Smajdor Joanna
Paczosa-Bator Beata
Rumin Martyna
spellingShingle Piech Robert
Smajdor Joanna
Paczosa-Bator Beata
Rumin Martyna
Fast and sensitive metronidazole determination by means of voltammetry on renewable amalgam silver based electrode without the preconcentration step
Journal of the Serbian Chemical Society
metronidazole
drugs
amalgam film electrodes
voltammetry
author_facet Piech Robert
Smajdor Joanna
Paczosa-Bator Beata
Rumin Martyna
author_sort Piech Robert
title Fast and sensitive metronidazole determination by means of voltammetry on renewable amalgam silver based electrode without the preconcentration step
title_short Fast and sensitive metronidazole determination by means of voltammetry on renewable amalgam silver based electrode without the preconcentration step
title_full Fast and sensitive metronidazole determination by means of voltammetry on renewable amalgam silver based electrode without the preconcentration step
title_fullStr Fast and sensitive metronidazole determination by means of voltammetry on renewable amalgam silver based electrode without the preconcentration step
title_full_unstemmed Fast and sensitive metronidazole determination by means of voltammetry on renewable amalgam silver based electrode without the preconcentration step
title_sort fast and sensitive metronidazole determination by means of voltammetry on renewable amalgam silver based electrode without the preconcentration step
publisher Serbian Chemical Society
series Journal of the Serbian Chemical Society
issn 0352-5139
1820-7421
publishDate 2017-01-01
description Application of cyclic renewable amalgam silver-based electrode (Hg(Ag)FE) for sensitive metronidazole detection by the differential pulse voltammetry (DPV) is described. The unique properties of the Hg(Ag)FE such as the relative large surface area and its fast and very simple renewal were fully utilized for sensitive measurements. Compared with the classical hanging mercury drop electrode (HMDE), the renewable Hg(Ag)FE significantly increases the reduction peak current of metronidazole because of its large surface area. The effects of various factors for the metronidazole determination such as: pulse height and width, step potential, surface area of the working electrode, and basic electrolyte composition are optimized. The obtained calibration graph is linear from 0.1 (17 μg L-1) to 2 μM (342 μg L-1) with correlation coefficient 0.999. For the Hg(Ag)FE with the surface area of 10.1 mm2 the limit of detection (LOD) is 20 nM (3.4 μg L-1). The repeatability of the method at a concentration of the analyte of 0.5 μM (5.6 μg L−1), expressed as relative standard deviation (RSD) is 2.1 % (n = 7). The proposed method was successfully applied and confirmed by studying recovery of metronidazole from spiked samples.
topic metronidazole
drugs
amalgam film electrodes
voltammetry
url http://www.doiserbia.nb.rs/img/doi/0352-5139/2017/0352-51391700052P.pdf
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AT paczosabatorbeata fastandsensitivemetronidazoledeterminationbymeansofvoltammetryonrenewableamalgamsilverbasedelectrodewithoutthepreconcentrationstep
AT ruminmartyna fastandsensitivemetronidazoledeterminationbymeansofvoltammetryonrenewableamalgamsilverbasedelectrodewithoutthepreconcentrationstep
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