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Structural, electrical, and magnetic study of La-, Eu-, and Er- doped bismuth ferrite nanomaterials obtained by solution combustion synthesis

Authors :
Wrzesińska, Angelika
Khort, Aliaksandr
Witkowski, Marcin
Szczytko, Jacek
Ryl, Jacek
Gurgul, Jacek
Kharitonov, Dmitry S.
Łątka, Kazimierz
Szumiata, Tadeusz
Wypych-Puszkarz, Aleksandra
Wrzesińska, Angelika
Khort, Aliaksandr
Witkowski, Marcin
Szczytko, Jacek
Ryl, Jacek
Gurgul, Jacek
Kharitonov, Dmitry S.
Łątka, Kazimierz
Szumiata, Tadeusz
Wypych-Puszkarz, Aleksandra
Publication Year :
2021

Abstract

In this work, the multiferroic bismuth ferrite materials Bi0.9RE0.1FeO3 doped by rare-earth (RE = La, Eu, and Er) elements were obtained by the solution combustion synthesis. Structure, electrical, and magnetic properties of prepared samples were investigated by X-ray photoelectron spectroscopy, Mössbauer spectroscopy, electrical hysteresis measurement, broadband dielectric spectroscopy, and SQUID magnetometry. All obtained nanomaterials are characterized by spontaneous electrical polarization, which confirmed their ferroelectric properties. Investigation of magnetic properties at 300.0 K and 2.0 K showed that all investigated Bi0.9RE0.1FeO3 ferrites possess significantly higher magnetization in comparison to bismuth ferrites obtained by different methods. The highest saturation magnetisation of 5.161 emu/g at 300.0 K was observed for the BLaFO sample, while at 2.0 K it was 12.07 emu/g for the BErFO sample. Several possible reasons for these phenomena were proposed and discussed.<br />QC 20211130

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1312824540
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1038.s41598-021-01983-z