Effects of naoh concentration and temperature on microstructures and magnetic properties of bismuth ferrite (Bifeo3) nanoparticles synthesized by coprecipitation method

Sulistiani, Fitria Ayu and Suharyadi, Edi and Kato, Takeshi and Iwata, Satoshi (2020) Effects of naoh concentration and temperature on microstructures and magnetic properties of bismuth ferrite (Bifeo3) nanoparticles synthesized by coprecipitation method. Key Engineering Materials, 855 KE. 9 – 15. ISSN 10139826

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Abstract

Bismuth ferrite (BiFeO3) nanoparticles has been synthesized by coprecipitation method with various NaOH concentration (4, 6, 8, and 10 M) and temperature (RT, 60, 80, and 100 °C). X-ray diffraction patterns showed the emergence of Bi(OH)3 and Bi25FeO40 structures with crystallite size in the range of 15.1 nm to 35.6 nm. The particles sample was agglomerated. Hysterisis loop showed the linear M–H loops behaviour with no magnetization saturation in 15 kOe maximum field applied which indicates the antiferromagnetic properties. The coercivity field tends to increase by the increasing of the NaOH concentration and synthesis temperature. In addition, the annealing treatment could leads the increasing of coercivity fields while decreasing the magnetization of BFO sampel. © 2020 Trans Tech Publications Ltd, Switzerland.

Item Type: Article
Additional Information: Cited by: 7; Conference name: International Conference on Magnetism and Its Application, ICMIA 2019; Conference date: 20 November 2019 through 21 November 2019; Conference code: 243189
Uncontrolled Keywords: Bismuth; Bismuth metallography; Coercive force; Coprecipitation; Crystallite size; Ferrite; Iron compounds; Nanomagnetics; Nanoparticles; Saturation magnetization; Sodium hydroxide; Synthesis (chemical); Annealing treatments; Antiferromagnetic property; Bismuth ferrites; Coercivity field; Coprecipitation method; Magnetization-saturation; NaOH concentration; Synthesis temperatures; Bismuth compounds
Subjects: Q Science > QC Physics
Divisions: Faculty of Mathematics and Natural Sciences > Physics Department
Depositing User: Sri JUNANDI
Date Deposited: 28 May 2025 07:14
Last Modified: 28 May 2025 07:14
URI: https://ir.lib.ugm.ac.id/id/eprint/16872

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