Electron spin resonance and magnetic phase transitions in manganite perovskite La₀.₇₈Sr₀.₂₂MnO₃ synthesized by the solid-phase reaction method

Magnetic properties of nanopowder of perovskite manganite doped with strontium La₀.₇₈Sr₀.₂₂MnO₃ are studied using electron paramagnetic resonance method. Analysis of the experiments in the temperature range T = 77-290 K shows that this structure is a typical nanostructure only at T < 100 K. In th...

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Дата:2018
Автори: Kalmykova, T., Vakula, A., Nedukh, S., Tarapov, S., Belous, A., Krivoruchko, V., Suhov, R.
Формат: Стаття
Мова:English
Опубліковано: НТК «Інститут монокристалів» НАН України 2018
Назва видання:Functional Materials
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Онлайн доступ:http://dspace.nbuv.gov.ua/handle/123456789/157128
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Назва журналу:Digital Library of Periodicals of National Academy of Sciences of Ukraine
Цитувати:Electron spin resonance and magnetic phase transitions in manganite perovskite La₀.₇₈Sr₀.₂₂MnO₃ synthesized by the solid-phase reaction method / T. Kalmykova, A. Vakula, S. Nedukh, S. Tarapov, A. Belous, V. Krivoruchko, R. Suhov // Functional Materials. — 2018. — Т. 25, № 2. — С. 241-245. — Бібліогр.: 19 назв. — англ.

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Digital Library of Periodicals of National Academy of Sciences of Ukraine
id irk-123456789-157128
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spelling irk-123456789-1571282019-06-20T01:27:45Z Electron spin resonance and magnetic phase transitions in manganite perovskite La₀.₇₈Sr₀.₂₂MnO₃ synthesized by the solid-phase reaction method Kalmykova, T. Vakula, A. Nedukh, S. Tarapov, S. Belous, A. Krivoruchko, V. Suhov, R. Characterization and properties Magnetic properties of nanopowder of perovskite manganite doped with strontium La₀.₇₈Sr₀.₂₂MnO₃ are studied using electron paramagnetic resonance method. Analysis of the experiments in the temperature range T = 77-290 K shows that this structure is a typical nanostructure only at T < 100 K. In the remaining temperature region, the structure is in the superparamagnetic and noncollinear superparamagnetic magnetic state. 2018 Article Electron spin resonance and magnetic phase transitions in manganite perovskite La₀.₇₈Sr₀.₂₂MnO₃ synthesized by the solid-phase reaction method / T. Kalmykova, A. Vakula, S. Nedukh, S. Tarapov, A. Belous, V. Krivoruchko, R. Suhov // Functional Materials. — 2018. — Т. 25, № 2. — С. 241-245. — Бібліогр.: 19 назв. — англ. 1027-5495 DOI:https://doi.org/10.15407/fm25.02.241 http://dspace.nbuv.gov.ua/handle/123456789/157128 en Functional Materials НТК «Інститут монокристалів» НАН України
institution Digital Library of Periodicals of National Academy of Sciences of Ukraine
collection DSpace DC
language English
topic Characterization and properties
Characterization and properties
spellingShingle Characterization and properties
Characterization and properties
Kalmykova, T.
Vakula, A.
Nedukh, S.
Tarapov, S.
Belous, A.
Krivoruchko, V.
Suhov, R.
Electron spin resonance and magnetic phase transitions in manganite perovskite La₀.₇₈Sr₀.₂₂MnO₃ synthesized by the solid-phase reaction method
Functional Materials
description Magnetic properties of nanopowder of perovskite manganite doped with strontium La₀.₇₈Sr₀.₂₂MnO₃ are studied using electron paramagnetic resonance method. Analysis of the experiments in the temperature range T = 77-290 K shows that this structure is a typical nanostructure only at T < 100 K. In the remaining temperature region, the structure is in the superparamagnetic and noncollinear superparamagnetic magnetic state.
format Article
author Kalmykova, T.
Vakula, A.
Nedukh, S.
Tarapov, S.
Belous, A.
Krivoruchko, V.
Suhov, R.
author_facet Kalmykova, T.
Vakula, A.
Nedukh, S.
Tarapov, S.
Belous, A.
Krivoruchko, V.
Suhov, R.
author_sort Kalmykova, T.
title Electron spin resonance and magnetic phase transitions in manganite perovskite La₀.₇₈Sr₀.₂₂MnO₃ synthesized by the solid-phase reaction method
title_short Electron spin resonance and magnetic phase transitions in manganite perovskite La₀.₇₈Sr₀.₂₂MnO₃ synthesized by the solid-phase reaction method
title_full Electron spin resonance and magnetic phase transitions in manganite perovskite La₀.₇₈Sr₀.₂₂MnO₃ synthesized by the solid-phase reaction method
title_fullStr Electron spin resonance and magnetic phase transitions in manganite perovskite La₀.₇₈Sr₀.₂₂MnO₃ synthesized by the solid-phase reaction method
title_full_unstemmed Electron spin resonance and magnetic phase transitions in manganite perovskite La₀.₇₈Sr₀.₂₂MnO₃ synthesized by the solid-phase reaction method
title_sort electron spin resonance and magnetic phase transitions in manganite perovskite la₀.₇₈sr₀.₂₂mno₃ synthesized by the solid-phase reaction method
publisher НТК «Інститут монокристалів» НАН України
publishDate 2018
topic_facet Characterization and properties
url http://dspace.nbuv.gov.ua/handle/123456789/157128
citation_txt Electron spin resonance and magnetic phase transitions in manganite perovskite La₀.₇₈Sr₀.₂₂MnO₃ synthesized by the solid-phase reaction method / T. Kalmykova, A. Vakula, S. Nedukh, S. Tarapov, A. Belous, V. Krivoruchko, R. Suhov // Functional Materials. — 2018. — Т. 25, № 2. — С. 241-245. — Бібліогр.: 19 назв. — англ.
series Functional Materials
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AT vakulaa electronspinresonanceandmagneticphasetransitionsinmanganiteperovskitela078sr022mno3synthesizedbythesolidphasereactionmethod
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AT tarapovs electronspinresonanceandmagneticphasetransitionsinmanganiteperovskitela078sr022mno3synthesizedbythesolidphasereactionmethod
AT belousa electronspinresonanceandmagneticphasetransitionsinmanganiteperovskitela078sr022mno3synthesizedbythesolidphasereactionmethod
AT krivoruchkov electronspinresonanceandmagneticphasetransitionsinmanganiteperovskitela078sr022mno3synthesizedbythesolidphasereactionmethod
AT suhovr electronspinresonanceandmagneticphasetransitionsinmanganiteperovskitela078sr022mno3synthesizedbythesolidphasereactionmethod
first_indexed 2023-05-20T17:51:00Z
last_indexed 2023-05-20T17:51:00Z
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