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A voltammetric sensor based on a carbon black and chitosan-stabilized gold nanoparticle nanocomposite for ketoconazole determination. | LitMetric

AI Article Synopsis

  • A modified glassy carbon electrode (GCE) incorporating carbon black and gold nanoparticles within a chitosan film was developed for sensing ketoconazole (KTO), an antifungal drug.
  • The electrode demonstrated an irreversible oxidation process for KTO at +0.65 V and was characterized using various techniques including SEM and electrochemistry.
  • The method provided a linear detection range for KTO from 0.10 to 2.9 μmol L, with a low limit of detection (4.4 nmol L) and was effectively used to analyze KTO in pharmaceutical and biological samples.

Article Abstract

A modified glassy carbon electrode with carbon black (CB) and gold nanoparticles (AuNPs) within a crosslinked chitosan (CTS) film is proposed in this work. The electroanalytical performance of the modified CB-CTS-AuNPs/GCE has been evaluated towards the voltammetric sensing of ketoconazole (KTO), a widespread antifungal drug. The nanocomposite was characterized by scanning electron microscopy, X-ray diffraction spectroscopy, and electrochemistry experiments. The evaluation of the electrochemical behaviour of KTO on the proposed modified electrode shows an irreversible oxidation process at a potential of +0.65 V ( Ag/AgCl (3.0 mol L KCl)). This redox process was explored to carry out KTO sensing using square-wave voltammetry. The analytical curve was linear in the KTO concentration range from 0.10 to 2.9 μmol L, with a limit of detection (LOD) of 4.4 nmol L and a sensitivity of 3.6 μA L μmol. This modified electrode was successfully applied to the determination of KTO in pharmaceutical formulations and biological fluid samples.

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Source
http://dx.doi.org/10.1039/d1ay01321aDOI Listing

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