Please use this identifier to cite or link to this item: https://ir.swu.ac.th/jspui/handle/123456789/29237
Title: A simple and fast flow injection amperometry for the determination of methimazole in pharmaceutical preparations using an unmodified boron-doped diamond electrode
Authors: Meoipun A.
Kaewjua K.
Chailapakul O.
Siangproh W.
Keywords: boron-doped diamond thin film electrode
drug formulations
flow injection analysis
Methimazole
Issue Date: 2023
Publisher: International Association of Physical Chemists
Abstract: In this work, an automated flow injection analysis (FIA) connected to a boron-doped diamond electrode (BDDE) was originally developed for the analysis of methimazole in pharmaceutical preparations. At a modification-free BDDE, methimazole was easilly oxidized. For the analysis of the mechanisms occurring at the electrode surface, cyclic voltammetry was employed to evaluate the impact of fundamental experimental parameters, such as pH and scan rate, on the BDDE response. For the quantitative detection, the FIA amperometric approach was constructed and used as a fast and sensitive method. The suggested approach provided a broad linear range of 0.5–50 µmol/L and a low detection limit of 10 nmol/L (signal-to-noise ratio = 3). Furthermore, the BDDE was successfully utilized to quantify methimazole in genuine samples from a variety of medicines, and its performance remained steady after more than 50 tests. The findings of amperometric measurements exhibit excellent repeatability, with relative standard deviations of less than 3.9 and 4.7 % for intra-day and inter-day, respectively. The findings indicated that, compared with traditional approaches, the suggested method has the following advantages: quick analysis time, simplicity, highly sensitive output, and no need for complicated operational processes. © 2023 by the authors.
URI: https://www.scopus.com/inward/record.uri?eid=2-s2.0-85163315835&doi=10.5599%2fadmet.1584&partnerID=40&md5=cf54ea76ab72c7900764484c31a69612
https://ir.swu.ac.th/jspui/handle/123456789/29237
Appears in Collections:Scopus 2023

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