ELABORATION AND CHARACTERIZATION OF α-Fe2O3 THIN FILMS BY RADIO FREQUENCY SPUTTERING

Author:

EL AMRI RANIA12ORCID,EL HAIMEUR AMINE1ORCID,KHAAISSA YASSINE1ORCID,EL MOUSSAOUI HASSAN2ORCID,SLASSI AMINE3ORCID,MAHFOUD TARIK2ORCID,NOUNEH KHALID1ORCID

Affiliation:

1. Laboratory of Materials Physics and Subatomic, Faculty of Science, University Ibn Tofail, BP133, 14000 Kenitra, Morocco

2. Materials and Nanomaterials Centre, Moroccan, Foundation for Advanced Science, Innovation and Research, 10100 Rabat, Morocco

3. LIRBEM, Cadi ayyad University, Marrakech, ENS, 40000, Morocco

Abstract

Fe2O3 thin films were deposited on alumina substrates by using the physical vapor deposition technique “RF magnetron sputtering”. The impact of the thermal treatment on the structural, optical and morphological properties was systematically investigated. The results of the structural characterizations reveal that the elaborated thin films present a main peak whichcorresponds to the crystalline plane (104) of the hematite ([Formula: see text]-Fe2O3). Furthermore, the Raman spectra confirm the existence of the hematite phase of the iron oxide. UV-Visible spectrophotometer analysis of Fe2O3 thin films before and after annealing shows that the transmittance increases with heat treatment. Moreover, the heat treatment at 500C significantly improves the absorption coefficient [Formula: see text], extinction coefficient k, refractive index n, and the band gap of Fe2O3 thin films. Furthermore, a spinel polarization change was found to be responsible for the ferrobehavior of Fe2O3 thanks to the lattice crystallinity enhancement. The density functional theory calculations demonstrate that the magnetic properties are very sensible to any induced strain in the Fe2O3 lattices.

Publisher

World Scientific Pub Co Pte Ltd

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