Nanomaterials (Apr 2022)

Relationship between the Formation of Magnetic Clusters and Hexagonal Phase of Gold Matrix in Au<sub>x</sub>Fe<sub>1−x</sub> Nanophase Thin Films

  • Claudiu Locovei,
  • Cristian Radu,
  • Andrei Kuncser,
  • Nicusor Iacob,
  • Gabriel Schinteie,
  • Anda Stanciu,
  • Sorina Iftimie,
  • Victor Kuncser

DOI
https://doi.org/10.3390/nano12071176
Journal volume & issue
Vol. 12, no. 7
p. 1176

Abstract

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AuxFe1−x nanophase thin films of different compositions and thicknesses were prepared by co-deposition magnetron sputtering. Complex morpho-structural and magnetic investigations of the films were performed by X-ray Diffraction, cross-section Transmission Electron Microscopy, Selected Area Electron Diffraction, Magneto Optical Kerr Effect, Superconducting Quantum Interference Device magnetometry and Conversion Electron Mössbauer Spectroscopy. It was proven that depending on the preparation conditions, different configurations of defect α-Fe magnetic clusters, i.e., randomly distributed or auto-assembled in lamellar or filiform configurations, can be formed in the Au matrix. A close relationship between the Fe clustering process and the type of the crystalline structure of the Au matrix was underlined, with the stabilization of a hexagonal phase at a composition close to 70 at. % of Au and at optimal thickness. Due to different types of inter-cluster magnetic interactions and spin anisotropies, different types of magnetic order from 2D Ising type to 3D Heisenberg type, as well as superparamagnetic behavior of non-interacting Fe clusters of similar average size, were evidenced.

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