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February 25, 2026ACS Omega2 citationsOpen Access

An MOF–Graphene Interface for Efficient Electrochemical Sensing of Water-Soluble Organic Dyes

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YDYoussef A. DarwishEWEman WahidHAHager G. Abdel-Mohey

Key Points

  • The aim is to develop a method for the differential detection and quantification of organic dyes in water using a MOF-graphene nanocomposite.
  • Developed a nanocomposite of UiO-66-NH2 MOF on graphene nanoplatelets (MOF@G).
  • Utilized electrochemical detection methods for various organic dye solutions.
  • Assessed the detection capabilities in aqueous acidic environments.
  • Achieved a detection limit of approximately 2 ppm for organic dyes.
  • Reported a dynamic linear range for dye detection up to 12 ppm.
  • Demonstrated the ability to differentiate between anionic dye components with overlapping UV-vis absorption.

Abstract

Differential detection and quantification of organic dyes in aqueous media are demonstrated utilizing an electrochemical method on a nanocomposite of UiO-66-NH2 MOF deposited on graphene nanoplatelets (MOF@G). The selected organic dyes are anionic molecules with overlapping UV–vis absorption bands, which makes it cumbersome to detect, differentiate, and quantify each component in a solution mixture. The method presented herein provides for such detection and differentiation utilizing the tailored properties of the nanocomposite MOF@G, where the high porosity and adsorption capacity of the MOF toward soluble organic molecules, alongwith the high electronic conductivity of the G support, synergistically harnessed to provide a facile method for rapid and sensitive detection that can be further exploited toward other types of solution-based electrochemical detection of small organic molecules. A low detection limit of ∼2 ppm and a large dynamic linear range up to 12 ppm in an aqueous acidic solution are reported.

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Cite This Study

Darwish et al. (2026) studied this question.

synapsesocial.com/papers/699e927bf5123be5ed050368https://doi.org/10.1021/acsomega.5c12062
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