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September 10, 2025ACS Applied Nano Materials16 citationsOpen Access

Electrochemical Synthesis of Cu3(HHTP)2 Metal–Organic Frameworks from Cu Nanoparticles for Chemiresistive Gas Sensing

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ALAbigail M. ListerBABen I. ArmitageYWYu Wang

Key Points

  • Electrochemical synthesis achieved a uniform distribution of Cu3(HHTP)2 on substrates, enhancing gas sensing capabilities.
  • Chemiresistive sensors demonstrated effective detection of NH3 in dry N2 with a sub-ppm limit of detection.
  • Electrochemical growth utilized copper nanoparticles generated via magnetron sputtering for consistent framework production.
  • The synthesized metal-organic frameworks serve as a functional component for improved sensing in electronic devices.

Abstract

The porosity of electrically conductive metal-organic frameworks (MOFs) make them attractive materials for use as the functional sensing element in a variety of electronic devices. Here, we present a route to reliably synthesize conductive MOFs uniformly and in situ through electrochemical growth of Cu3(HHTP)2 from Cu nanoparticle precursors. The nanoparticles are generated using a magnetron sputtering source and are deposited on glass substrates patterned with interdigitated electrodes. Subsequent solution-based electrochemical growth results in a uniform distribution of the MOF on the substrates as determined through Raman spectroscopy, XPS, SEM, and PXRD techniques. As a proof of concept, the MOF-decorated electrodes are then investigated as chemiresistive sensors for NO2 and NH3 gases. Sensing of NH3 in dry N2 carrier gas is achieved with a sub-ppm limit of detection.

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Cite This Study

Lister et al. (2025) studied this question.

synapsesocial.com/papers/68c1a78154b1d3bfb60e0f9chttps://doi.org/10.1021/acsanm.5c02304
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