The Use of the Gliding Arc Plasma Technique to Deposit Fe or Mn Oxides on Fibrous Ceramic Supports for Reactions of Environmental Interest

Leonardi, Sabrina Antonela;Rodriguez, Maximiliano;Miró, Eduardo Ernesto;Gaigneaux, Eric;Milt, Viviana Guadalupe
(2025) Materials — Vol. 18, n° 24, p. 5479 (2025)

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  • Leonardi, Sabrina Antonelaorcid-logo
    Author
  • Rodriguez, Maximiliano
    Author
  • Miró, Eduardo Ernesto
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  • Milt, Viviana Guadalupeorcid-logo
    Author
Abstract
The gliding arc plasma technique (glidarc) was used for the precipitation and deposition of Mn or Fe oxides on zirconia fibers. Two types of fibers were used: commercial (Fib Zr(C)) and biomorphic (Fib Zr(B)) ZrO2 fibers, the latter produced using cotton as a biotemplate. Both series of supported catalysts were characterized physicochemically and morphologically. Scanning Electron Microscopy (SEM) analyses showed that Fib Zr(B) largely retained the morphology of cotton. Fib Zr(B) presented the tetragonal phase (t-ZrO2), while Fib Zr(C) exhibited the monoclinic phase (m-ZrO2). Using X-ray Diffraction (XRD), the cryptomelane phase (KxMn8O16) was identified only for Mn-Fib Zr(B). In the case of Fe-supported samples, the α-Fe2O3 phase appeared clearly in both biomorphic and commercial fibers. SEM and Transmission Electron Microscopy (TEM) images revealed that the precipitated iron oxides appeared to be better distributed than the manganese oxides, covering the outer surface of the fibrous supports more homogeneously. X-ray Photoelectron Spectroscopy (XPS) confirmed that Mn has an average oxidation state between 3+ and 4+, consistent with the cryptomelane phase detected by XRD. The synthesized supported systems were tested as catalysts in soot and CO oxidation, with the Mn-supported fibers proving to be more active than their Fe-containing counterparts in both reactions.
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Leonardi, S. A., Rodriguez, M., Miró, E. E., Gaigneaux, E., & Milt, V. G. (2025). The Use of the Gliding Arc Plasma Technique to Deposit Fe or Mn Oxides on Fibrous Ceramic Supports for Reactions of Environmental Interest. Materials, 18(24), 5479. https://doi.org/10.3390/ma18245479 (Original work published 2025)