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September 12, 2025Chemosensors18 citationsOpen Access

Noble Metal-Decorated In2O3 for NO2 Gas Sensor: An Experimental and DFT Study

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PRParameswari RajuJRJafetra RambelosonDIDimitris E. Ioannou

Key Points

  • The Au/In2O3 sensor shows a 38.9% response to 10 ppm NO2, significantly higher than bare In2O3's 10% response.
  • Density functional theory calculations back the findings, illustrating the spillover effect and catalytic performance of noble metals.
  • The experimental tests validate the induction of enhanced sensing capabilities in indium oxide when decorated with noble metals.
  • Results suggest that the adsorption energies and charge transfers contribute markedly to the sensor's heightened performance.

Abstract

Indium oxide-based gas sensors have been proven to be a promising material for detecting nitrogen dioxide (NO2) gas because of its wide bandgap and stability. In this paper, the enhancement mechanism for the sensitivity of indium oxide NO2 gas sensors was systematically investigated using density functional theory (DFT) calculations and experimental validation with noble metals like Au, Ag, Pt, Pd, and Cu. We have fabricated a GaN nanowire-based NO2 gas sensor functionalized with In2O3 and decorated with noble metals using a standard fabrication technique. Experimental tests showed that Au/In2O3 sensors exhibited the highest response of 38.9% followed by bare In2O3 with 10% for 10 ppm NO2 at room temperature. The sensing properties were mainly attributed to a spillover effect or catalytic performance of Au with In2O3. The adsorption energies, charge transfers, and band gap confirm the enhanced sensing capability of Au-decorated Indium oxide for a NO2 gas sensor.

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Cite This Study

Raju et al. (2025) studied this question.

synapsesocial.com/papers/68d44a4031b076d99fa53866https://doi.org/10.3390/chemosensors13090350
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