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April 19, 2026ChemPhysChem0 citations

Nanoparticulate Co‐doped CuO/Multiwalled Carbon Nanotubes Composite for Dopamine

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KLKulanit LanamkhamSHShouce HuangKSKiyotaka Sasagawa

Key Points

  • The aim is to develop an effective electrochemical sensor for dopamine detection using a CuO composite.
  • Synthesis of Co-doped CuO and MWCNT composite via solution combustion.
  • Characterization of nanoparticles under 100 nm.
  • Cyclic voltammetry (CV) used to analyze dopamine oxidation.
  • Assessment of sensitivity and selectivity against other neurotransmitters.
  • Co-doped CuO/MWCNT showed enhanced electrocatalytic activity compared to undoped.
  • High sensitivity of 65.001 µA⋅µM⁻¹⋅cm⁻² for the Co-doped sensor.
  • Low detection limit of 0.0285 µM.
  • Strong selectivity against acetylcholine and serotonin.

Abstract

Dopamine is a key neurotransmitter crucial for learning, memory, emotion, sleep, and motor control. Its imbalance is linked to disorders such as Parkinson's disease and depression. To address the limitations of costly and specialized dopamine detection methods, this study developed an electrochemical sensor using copper oxide (CuO) and 3 mol% cobalt doped CuO (Co-doped CuO) composite with multiwalled carbon nanotubes (MWCNT). Both materials were synthesized via solution combustion, yielding single-phase nanoparticles under 100 nm. Cyclic voltammetry (CV) showed dopamine oxidation at 0.75 V for concentrations ranging from 0.1 to 100 μM. The Co-doped CuO/MWCNT composite exhibited enhanced electrocatalytic activity compared to undoped CuO/MWCNT, confirmed by CV and chronoamperometry. The Co-doped sensor demonstrated high sensitivity (65.001 μA⋅μM-1⋅cm-2), significantly higher than the 57.297 μA⋅μM-1⋅cm-2 observed for the undoped CuO-based electrode. A low detection limit is 0.0285 μM, and strong selectivity against interfering neurotransmitters like acetylcholine and serotonin. This innovative electrochemical method advances our understanding of CuO/MWCNT composites and offers a practical and effective solution for dopamine detection.

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Cite This Study

Lanamkham et al. (2026) studied this question.

synapsesocial.com/papers/69e4745f010ef96374d90143https://doi.org/10.1002/cphc.202500575
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