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Facile Electrochemical Sensor for Sensitive and Selective Determination of Guaifenesin, Phenylephrine and Paracetamol on Electrochemically Pretreated Pencil Graphite Electrode| Abstract

Journal of Materials Science and Nanomaterials
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  • Mini Review   
  • J Mater Sci Nanomater 2022, Vol 6(3): 040
  • DOI: 10.4172/jmsn.100043

Facile Electrochemical Sensor for Sensitive and Selective Determination of Guaifenesin, Phenylephrine and Paracetamol on Electrochemically Pretreated Pencil Graphite Electrode

He Zeming*
Department of Material Science, Nano Material Research Center, Singapore
*Corresponding Author : He Zeming, Department of Material Science, Nano Material Research Center, Singapore, Email: msehze123@nus.edu.sg

Received Date: May 02, 2022 / Accepted Date: May 26, 2022 / Published Date: May 30, 2022

Abstract

Guaifenesin (GFS), phenylephrine (PHE) and paracetamol (PAR), drugs used in combination for the relief of cold and flu symptoms, were determined at electrochemically pretreated pencil graphite electrode. Differential pulse voltammetry (DPV) was used for the first time for the concomitant determination of the target compounds based on the electro-oxidation of PAR at 0.43 V, PHE at 0.74 V and GFS at 1.14 V in Britton–Robinson buffer pH 6.0. Under optimized experimental con-ditions, two linear ranges were obtained for PAR (2.50 × 10−6 M–1.00 × 10−5 M and 1.00 × 10−5 M–1.00 × 10−4 M) and for PHE and GFS linearity was proved between 5.00 × 10−6 M–2.00 × 10−4 M and 2.50 × 10−6 M–2.00 × 10−4 M, respectively. The detection limits were 8.12 × 10−7 M for PAR, 1.80 × 10−6 M for PHE and 8.29 × 10−7 M for GFS.The selective and sensitive DPV method and the electrochemically treated electrode [1].

Citation: Zeming H (2022) Facile Electrochemical Sensor for Sensitive and Selective Determination of Guaifenesin, Phenylephrine and Paracetamol on Electrochemically Pretreated Pencil Graphite Electrode. J Mater Sci Nanomater 6: 040. Doi: 10.4172/jmsn.100043

Copyright: © 2022 Zeming H. This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.

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