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Multiferroic behavior of the functionalized surface of a flexible substrate by deposition of Bi2O3 and Fe2O3
Authors:Shikhgasan Ramazanov  Dinara Sobola  ?tefan ??lu  Farid Orudzev  Ali Arman  Pavel Kaspar  Rashid Dallaev  Guseyn Ramazanov
Affiliation:1. Faculty of Chemistry, Department of Physical and Organic Chemistry, Dagestan State University, Makhachkala, Russia;2. Department of Physics, Faculty of Electrical Engineering and Communication, Brno University of Technology, Brno, Czech Republic;3. The Technical University of Cluj-Napoca, The Directorate of Research, Development and Innovation Management (DMCDI), Cluj-Napoca, Romania;4. Vacuum Technology Research Group, ACECR, Sharif University Branch, Tehran, Iran;5. Faculty of Technology, Course “Design”, Dagestan State Technical University, Makhachkala, Russia
Abstract:Thin films of bismuth and iron oxides were obtained by atomic layer deposition (ALD) on the surface of a flexible substrate poly(4,4′-oxydiphenylene-pyromellitimide) (Kapton) at a temperature of 250°C. The layer thickness was 50 nm. The samples were examined by secondary-ion mass spectrometry, and uniform distribution of elements in the film layer was observed. Surface morphology, electrical polarization, and mechanical properties were investigated by atomic force microscope, piezoelectric force microscopy, and force modulation microscopy. The values of current in the near-surface layer varied in the range of ±80 pA when a potential of 5 V was applied. Chemical analysis was performed by X-ray photoelectron spectroscopy, where the formation of Bi2O3 and Fe2O3 phases, as well as intermediate phases in the Bi–Fe–O system, was observed. Magnetic measurements were carried out by a vibrating sample magnetometer that showed a ferromagnetic response. The low-temperature method of functionalization of the Kapton surface with bismuth and iron oxides will make it possible to adapt the Bi–Fe–O system to flexible electronics.
Keywords:atomic layer deposition  Bi2O3  BiFeO3  Fe2O3  flexible substrate  functionalized surface  multiferroic
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