AI Article Synopsis

  • * A dual-mode sensing system was developed using these CuO nanoparticles, allowing detection of thiourea and aluminum in the range of 1-100 µM, while improving selectivity and precision.
  • * The nanoparticle-based system was successfully tested on real environmental samples like tap, lake, and river water, demonstrating a promising approach for future nano-sensing technologies.

Article Abstract

CuO nanoparticles with good water solubility and uniform particle size were successfully prepared. Interestingly, the oxidase-like activity of CuO NPs was continuously enhanced by the addition of thiourea (TU), and the enzyme activity was further enhanced by the addition of aluminum ion (Al). By systematically exploring and optimizing the experimental conditions, including the key parameters such as temperature, reaction time, and pH, a fluorescence-colorimetric dual-mode sensing system based on CuO nanoparticles was constructed. The detection range of TU and Al were 1-100 µM and 1-100 µM, respectively, and the selectivity and precision of detection were further improved. In addition, the catalytic mechanism of CuO NPs as oxidase-like catalysts and the specific process in the reaction were investigated. Finally, the nano-sensing system was successfully applied to the analysis of three real environmental samples, namely, tap water, lake water and river water, which provided an effective new strategy for the future development of nano-sensing technology for TU and Al.

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Source
http://dx.doi.org/10.1007/s00604-024-06758-7DOI Listing

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