2023•Mediterranean Journal of ChemistryOpen access

Electrochemical behavior of Metronidazole (MNZ) at glassy carbon electrode at different concentrations

Ratnesh Das, Aayushi Chanderiya, Atish Roy, Sushil K. Kashaw

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Abstract

A robust and straightforward electrochemical methodology based on electrochemical detection of Metronidazole (MNZ) at glassy carbon electrodes was suggested to determine. MNZ formed well-defined reversible cyclic voltammograms on the glassy carbon electrode in the Britton Robinson buffer solution. Various parameters' effects on voltammetric results were also evaluated. For MNZ determination, a differential pulse voltammetric model was introduced and developed. Excellent recovery results for spiked MNZ in pharmaceutical tablet samples were obtained, with recovery rates ranging from 97.44 to 97.51 percent.

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A robust and straightforward electrochemical methodology based on electrochemical detection of Metronidazole (MNZ) at glassy carbon electrodes was suggested to determine. MNZ formed well-defined reversible cyclic voltammograms on the glassy carbon electrode in the Britton Robinson buffer solution. Various parameters' effects on voltammetric results were also evaluated. For MNZ determination, a differential pulse voltammetric model was introduced and developed. Excellent recovery results for spiked MNZ in pharmaceutical tablet samples were obtained, with recovery rates ranging from 97.44 to 97.51 percent.

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Available abstract

A robust and straightforward electrochemical methodology based on electrochemical detection of Metronidazole (MNZ) at glassy carbon electrodes was suggested to determine. MNZ formed well-defined reversible cyclic voltammograms on the glassy carbon electrode in the Britton Robinson buffer solution. Various parameters' effects on voltammetric results were also evaluated. For MNZ determination, a differential pulse voltammetric model was introduced and developed. Excellent recovery results for spiked MNZ in pharmaceutical tablet samples were obtained, with recovery rates ranging from 97.44 to 97.51 percent.

Key concepts: Chemistry, Electrochemistry, Glassy carbon, Differential pulse voltammetry, Electrode, Carbon fibers, Cyclic voltammetry, Voltammetry

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