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May 14, 2026Communications Materials0 citationsOpen Access

Carbon-black-coupled bimetallic CoCu-ZIF composites for monohydroxylated polycyclic aromatic hydrocarbon metabolite sensing

CWChandra WulandariAMAtqiya MuslihatiNSNi Luh Wulan Septiani

Key Points

  • The aim is to develop an efficient sensor using CoCu-ZIF composites for detecting 2-Naphthol, a harmful pollutant.
  • Developed bimetallic CoCu-ZIF particles coupled with carbon black for enhanced conductivity.
  • Conducted electrochemical sensing experiments on 2-Naphthol in non-biological urine.
  • Measured sensitivity, limit of detection, and performance metrics.
  • Sensors displayed a sensitivity of 0.98 µA µM⁻¹ and a limit of detection at 0.46 µM for 2-Naphthol.
  • Detection range established was from 1–500 µM with strong performance metrics.
  • Demonstrated excellent selectivity, reproducibility, and recovery rates in urine samples.

Abstract

Abstract Polycyclic aromatic hydrocarbons are hazardous, carcinogenic pollutants produced by the incomplete combustion of organic materials, and their detection remains a technological challenge. Here, we develop bimetallic cobalt-and-copper-based zeolitic imidazolate framework (CoCu-ZIF) particles coupled with carbon black (CB) for highly sensitive and selective electrochemical sensing of 2-Naphthol, a monohydroxylated polycyclic aromatic hydrocarbon. The CoCu-ZIF with dual redox-active sites of Co 3+ /Co 2+ and Cu 2+ /Cu + promotes efficient electron transfer during the oxidation process, thus effectively catalyzing the oxidation of 2-Naphthol. Carbon black provides a conductive network facilitating efficient electron transport between CoCu-ZIF and electrode surface. The fabricated sensors exhibit a sensitivity and limit of detection of 0.98 µA µM⁻¹ and 0.46 µM, respectively, during exposure to 2-Naphthol within a detection range of 1–500 µM. Moreover, due to their excellent sensing performance, selectivity, reproducibility, and recovery rate in non-biological urine, the developed composites offer strong potential for real-time polycyclic aromatic hydrocarbon monitoring and future use in environmental sensor technologies.

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Cite This Study

Wulandari et al. (2026) studied this question.

synapsesocial.com/papers/6a0567a8a550a87e60a1fd6ehttps://doi.org/10.1038/s43246-026-01150-9
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