Clear Search sequence regions


  • 2 aminothiophenol (1)
  • 2 aminothiophenol (2)
  • carbon (6)
  • cloth (4)
  • electrodes (2)
  • gold (2)
  • layer (1)
  • metal (1)
  • o atp (1)
  • polymers (2)
  • signals (1)
  • sulfhydryl compounds (2)
  • tert (6)
  • Sizes of these terms reflect their relevance to your search.

    In this study, an electrochemical sensor based on MoS2 with enhanced electrochemical signals from electrochemically activated carbon cloth (EACC) electrodes and cross-linked o-aminothiophenol functionalized AuNPs (o-ATP@AuNPs) was developed for the detection of the unsaturated vegetable oil antioxidant tert-butylhydroquinone (TBHQ). In this approach, carbon cloth is activated through the implementation of electrochemical methods, thereby effectively increasing its specific surface area. The resulting EACC, serving as an electrode substrate, enables the growth of additional nanomaterials and enhances conductivity. The incorporation of MoS2 effectively augments the sensitivity of the electrochemical sensor. Subsequently, MIP/MoS2/EMCC is formed via electropolymerization, utilizing TBHQ as the template molecule and o-ATP@AuNPs as the functional monomer. The SS bond of o-ATP ensures a strong and stable connection between MoS2 and o-ATP@AuNPs, thereby facilitating the immobilization of MIP. In addition, the high conductivity possessed by o-ATP@AuNPs could effectively improve the sensitivity of the electrochemical sensor. Under the optimal conditions, MIP/MoS2/EMCC could determine TBHQ in the range of 1 × 10-3 μM to 120 μM by differential pulse voltammetry (DPV) with a detection line of 0.72 nM. The proposed MIP/MoS2/EMCC is expected to be applied in the future for the selective and sensitive detection of TBHQ in vegetable oils. Copyright © 2023. Published by Elsevier Ltd.

    Citation

    Hai Chi, Chong Yang, Guoqin Liu. An electrochemical sensor based on electrochemically activated carbon cloth and poly (o-aminothiophenol) cross-linked nanogold imprinted layer for the determination of tert-butylhydroquinone. Food chemistry. 2024 Sep 15;452:139548

    Expand section icon Mesh Tags

    Expand section icon Substances


    PMID: 38728894

    View Full Text