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Published October 2023 | Version v1
Journal article

Electrochemical determination of thiethylperazine using semi-graphitized carbon nanofibers-MnO nanocomposite

  • 1. Department of Analytical Chemistry and Biochemistry, Faculty of Materials Science and Ceramics, AGH University of Science and Technology, Krakow (Poland)
  • 2. Department of Biomaterials and Composites, Faculty of Materials Science and Ceramics, AGH University of Science and Technology, Krakow (Poland)
  • 3. Surface and Biomaterials Nanoengineering, Academic Centre for Materials and Nanotechnology, AGH University of Science and Technology, Krakow (Poland)

Description

A new voltammetric method is proposed for high sensitive thiethylperazine (THP) determination, using a glassy carbon electrode modified with semi-graphitized carbon nanofibers/MnO nanocomposite (eCNF/MnO/GC). To the best of our knowledge, this is the first electrochemical assay of THP determination, and the first use of the eCNF/MnO as the electrode modifier. The proposed method using eCNF/MnO/GC is characterized by high repeatability and sensitivity of measurements, with the linearity of THP in the range from 0.05 to 2.2 µmol L−1. The lowest detection limit achieved on the eCNF/MnO/GC electrode for 30 s of preconcentration was 6.3 nmol L−1 THP in 0.05 mol L−1 acetate buffer of pH 5.6. The proposed method was successfully applied to highly sensitive THP determination in complex matrices, such as tablets and plasma with good recovery (98–103%). The RSD value obtained for THP measurement at a concentration of 0.1 µmol L−1 was 1.3%. Amperometric measurements of THP under the flow injection conditions were also performed to indicate the possibility of its fast and accurate determination (103% and 95% for unmodified and modified electrode, respectively), with the duration of single analysis of approx. 30 s. Graphical

Additional details

Publishing Information

Journal Title
Microchimica Acta (Online)
Journal Volume
190
Journal Issue
11
Journal Page Range
p. 1-12
ISSN
1436-5073

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Copyright
Copyright (c) 2023 The Author(s)