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dc.contributor.authorAmirov, A. A.
dc.contributor.authorMakoed, I. I.
dc.contributor.authorChaudhari, Y. A.
dc.contributor.authorBendre, S. T.
dc.contributor.authorYusupov, D. M.
dc.contributor.authorAsvarov, A. Sh.
dc.contributor.authorLiedienov, N. A.
dc.contributor.authorPashchenko, A. V.
dc.date.accessioned2020-09-18T10:03:33Z
dc.date.available2020-09-18T10:03:33Z
dc.date.issued2018-02-10
dc.identifier.citationAmirov, A.A. Magnetocaloric Effect in BiFe1−xZnxO3 Multiferroics / A.A. Amirov [et al.] // Journal of Superconductivity and Novel Magnetism. — 2018. – Vol. 31, iss. 10. – P. 3283–3288..ru_RU
dc.identifier.issn1557-1939
dc.identifier.issn1557-1947
dc.identifier.urihttp://rep.brsu.by:80/handle/123456789/373
dc.description.abstractCeramic BiFe1−xZnxO3 multiferroic samples were prepared by the solid combustion method for x = 0.1, 0.15, and 0.2. Structural, magnetic, and magnetocaloric properties of the multiferroics have been studied. For all samples, an antiferromagnetic phase transition is observed in the region of 630 K. With increase in x, the reduction in magnitude of magnetization and Neel temperature is observed. The magnetocaloric properties, entropy, relative cooling power, and heat capacity have been calculated within the framework of thermodynamic theory. It has been established that the maximum changes of magnetocaloric properties of multiferroics are observed in the region of magnetic phase transition.ru_RU
dc.language.isoenru_RU
dc.publisherSpringer Verlagru_RU
dc.subjectmultiferroicsru_RU
dc.subjectphase transitionsru_RU
dc.subjectmagnetocaloric effectru_RU
dc.subjectentropyru_RU
dc.subjectrelative cooling powerru_RU
dc.subjectheat capacityru_RU
dc.titleMagnetocaloric Effect in BiFe1−xZnxO3 Multiferroicsru_RU
dc.typeArticleru_RU


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