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Crystal structure, magnetic properties, and raman spectra of solid solutions BaFe12–x Al x O19

А.В. ТрухановNational Research University of Science and Technology MISiS, Leninskii pr. 4, Moscow, 119049, RussiaN. T. DangInstitute of Research and Development, Duy Tan University, Da Nang, VietnamS. V. TrukhanovSSPA Scientific and Practical Materials Research Centre of National Academy of Science of Belarus, ul. P. Brovki 19, Minsk, 220072, BelarusS. H. JabarovBayerisches Geoinstitute, University Bayreuth, Bayreuth, GermanyI. S. KazakevichSSPA Scientific and Practical Materials Research Centre of National Academy of Science of Belarus, ul. P. Brovki 19, Minsk, 220072, BelarusА. И. МаммадовInstitute of Physics, National Academy of Science of Azerbaijan, pr. G. Javida, Baku, AZ1143, AzerbaijanR. Z. MekhdiyevaInstitute of Physics, National Academy of Science of Azerbaijan, pr. G. Javida, Baku, AZ1143, AzerbaijanВ. А. ТурченкоJoint Nuclear Research Institute, ul. Jolio–Curie 6, Dubna, Moscow oblast, 141980, RussiaR. E. HuseynovInstitute of Physics, National Academy of Science of Azerbaijan, pr. G. Javida, Baku, AZ1143, Azerbaijan
2016en
ABI

Аннотация

The crystal structures of solid solutions of hexagonal ferrites BaFe12–x Al x O19 (x = 0.1–1.2) have been studied using X-ray diffraction. It has been found that, at normal conditions, the samples are characterized by space group P63/mmc. It has been noted that the diamagnetic substitution of Al3+ ions for Fe3+ leads to a decrease in the unit cell parameters due to the smaller aluminum ion radius. The field dependences of the specific magnetic moment have been studied in fields of ±2 T at 5 and 300 K using vibrating magnetometry. It has been found that the specific magnetic moment decreases from 49.6 emu/g (x = 0.1) to 32 emu/g (x = 1.2) as the concentration of the diamagnetic ions increases. The microstructure has been studied using scanning electron microscopy. The Raman spectra have been measured in the range of 200–800 cm–1.

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