RUS  ENG
Full version
JOURNALS // Pisma v Zhurnal Tekhnicheskoi Fiziki // Archive

Pisma v Zhurnal Tekhnicheskoi Fiziki, 2019 Volume 45, Issue 7, Pages 21–24 (Mi pjtf5476)

This article is cited in 1 paper

Magnetic and dielectric properties of $(1-x)$BiFeO$_{3}$$x$YMnO$_{3}$ multiferroics

V. I. Mikhaylova, V. T. Dovgiia, A. I. Linnika, Z. F. Kravchenkoa, V. I. Kameneva, N. N. Kulikb, A. V. Bodnarukb, Yu. A. Legenkiic, D. D. Tatarchukd, N. V. Davydeikoa

a O O Galkin Donetsk Institute for Physics and Engineering, National Academy of Sciences of Ukraine
b Institute of Physics, National Academy of Sciences of Ukraine, Kiev
c Donetsk National University
d National technical university of Ukraine «Igor Sikorsky Kyiv polytechnic institute», Kiev

Abstract: Magnetic hysteresis loops obtained in the fields from 0 to $\pm$ 2.5 kOe and dielectric permittivity $\varepsilon$ (at 1 kHz, 1 MHz, and 8.3 GHz) of $(1-x)$BiFeO$_{3}$$x$YMnO$_{3}$ composite multiferroics (0 $\le x \le$ 0.5) were studied. Ceramic samples of solid solutions were made by the nitrate process. Compositions $(1-x)$BiFeO$_{3}$$x$YMnO$_{3}$ with 0.1 $\le x \le$ 0.5 were found to be soft ferromagnetic materials sensitive to weak magnetic fields. Coercive field $H_c$ is about 20–32 Oe for these samples. The maximal magnetization was observed in the sample having $x$ = 0.35. For the samples with 0 $\le x \le$ 0.4 at $T$ = 300 K, the permittivity was $\varepsilon\sim$ 17.6–248.6 at the frequency of 1 kHz, 7.8–63.2 at 1 MHz, and 4 $\pm$ 0.3 at 8.3 GHz.

Received: 25.10.2018
Revised: 09.01.2019
Accepted: 10.01.2019

DOI: 10.21883/PJTF.2019.07.47531.17574


 English version:
Technical Physics Letters, 2019, 45:4, 327–330

Bibliographic databases:


© Steklov Math. Inst. of RAS, 2024