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October 19, 2025Catalysts4 citationsOpen Access

Photocatalytic Degradation of VOCs Using Ga2O3-Coated Mesh for Practical Applications

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HCHyeongju ChaSKSunjae KimJJJ. S. Jung

Key Points

  • The Ga2O3-coated mesh achieved 93-95% VOC degradation efficiency over five cycles with minimal activity loss.
  • Under UV irradiation, the coated mesh provided comparable VOC degradation rates and first-order kinetics to Ga2O3 powder.
  • Cross-sectional analysis confirmed strong adhesion properties of the Ga2O3 layer on the stainless-steel mesh.
  • Significantly reduced VOC peaks in FTIR spectra after degradation reveal the effectiveness of the photocatalyst.

Abstract

Volatile organic compounds (VOCs) are major contributors to air pollution, posing significant environmental and health risks. Here we report gallium oxide (Ga2O3)-coated mesh as a practical immobilized photocatalyst for VOC degradation under UVC irradiation. A 3 wt.% Ga2O3 suspension was spray-coated onto the stainless-steel mesh, yielding a uniform coating with strong adhesion properties, as confirmed by cross-sectional analysis. Under identical conditions to a Ga2O3 powder, the Ga2O3-coated mesh delivered comparable VOC degradation rates and first-order kinetics while offering superior mechanical stability and ease of handling. Over five consecutive cycles, 93–95% of the VOC degradation efficiency was retained with negligible loss of activity, confirming excellent reusability. Fourier Transform Infrared Spectroscopy (FTIR) spectra of the Ga2O3-coated mesh after degradation reaction revealed significantly reduced VOC peaks, such as C=O and C-O absorption peaks, whereas spectra for the uncoated mesh changed only slightly. These results indicate that VOC degradation originates from the coated photocatalyst. Overall, these findings demonstrate that Ga2O3-coated mesh is a highly efficient, stable, and reusable platform for VOC removal, suggesting its potential for practical applications in air purification and environmental remediation.

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Cite This Study

Cha et al. (2025) studied this question.

synapsesocial.com/papers/68f4b10d3d9d770bbc696e18https://doi.org/10.3390/catal15100972
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