Electronic structure of BiFe 1-x Mn xO 3 thin films investigated by x-ray absorption spectroscopy

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Abstract

Multiferroic polycrystalline BiFe 1-x Mn xO 3 (0x0.3) thin films have been prepared on the Pt(111)/Ti/SiO2/Si(100) substrates by pulsed laser deposition method. The influence of Mn substitution on the electronic structure and magnetic properties has been studied. X-ray diffraction spectroscopy shows that Mn substitution slightly modulates crystal structure of the BiFe 1-x Mn xO 3 system within the same structural phase. According to Fe L edge X ray absorption spectroscopy, Fe ions are found to be formally trivalent for doping amount x in BiFe1-xMnxO3. The enhanced magnetization by increasing Mn content is attributed to an alternation degree of hybridization between Fe 3d-O 2p and Mn 3d-O 2p orbitals, basing on the carefully examined Fe L and O K edge X-ray absorption spectroscopy. The crystal structural and the electronic structural results show a causal relation between them by demonstrating intrinsic mutual dependence between respective variations. Copyright © 2012 Abduleziz Ablat et al.

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Ablat, A., Muhemmed, E., Si, C., Wang, J., Qian, H., Wu, R., … Ibrahim, K. (2012). Electronic structure of BiFe 1-x Mn xO 3 thin films investigated by x-ray absorption spectroscopy. Journal of Nanomaterials, 2012. https://doi.org/10.1155/2012/123438

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