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May 25, 20260 citationsOpen Access

Graphenated polyaniline-doped tungsten oxide nanocomposite sensor for real time determination of phenanthrene

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HCHuman Sciences Research Council

Key Points

  • This research aims to develop a novel sensor for the real-time determination of phenanthrene concentrations.
  • Prepared a nanocomposite sensor using electropolymerisation of aniline and tungsten oxide on a graphene-modified glassy carbon electrode.
  • Conducted cyclic voltammetry to investigate the electro-oxidation behaviour of phenanthrene.
  • Compared the sensitivity of the PANI/WO3/GR/GCE sensor with other electrodes including GCE and PANI/GCE.
  • The sensor showed a dynamic linear range of 1.0 - 6.0 pM for phenanthrene detection.
  • Achieved a detection limit of 0.123 pM, surpassing the sensitivity of other tested electrodes.
  • Sensitivity was lower than the WHO permissible level of 1.12 nM phenanthrene in wastewater.

Abstract

A graphenated polyaniline/tungsten oxide (PANI/WO3/GR) nanocomposite sensor was prepared by elec-tropolymerisation of a mixture of aniline monomer and tungsten oxide on a graphene-modified glassycarbon electrode (GCE). The PANI/WO3/GR/GCE nanocomposite electrode was tested as a sensor for the determination of phenanthrene. The direct electro-oxidation behaviour of phenanthrene on thePANI/WO3/GR modified GCE was carefully investigated by cyclic voltammetry. The results indicated that the PANI/WO3/GR/GCE sensor was more sensitive to phenanthrene (with a dynamic linear range of 1.0 -6.0 pM and a detection limit of 0.123 pM.) than GCE, PANI/GCE or PANI/WO3/GCE. The sensor exhibited excellent reproducibility and long-term stability. The sensor exhibits lower detection sensitivity than the WHO permissible level of 1.12 nM phenanthrene in waste water.

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Cite This Study

Human Sciences Research Council (2026) studied this question.

synapsesocial.com/papers/6a13e83b0e02ee3982d32e6ahttps://doi.org/10.14749/32386371
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