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Studies of ferroelectric and magnetic phase transitions in multiferroic PbFe0.5B0.5O3–PbTiO3 (B = Nb, Ta) solid solution ceramics
Raevski I.P.3; Kubrin S.P.3; Blazhevich A.V.3; Molokeev M.S.5; Misjul S.V.1; Eremin E.V.5; Chen H.4; Chou C.-C.2; Sitalo E.I.3; Raevskaya S.I.3; Titov V.V.3; Sarychev D.A.3; Malitskaya M.A.3; Zakharchenko I.N.3
2014
Conference NameInternational Symposium on Physics and Mechanics of New Materials and Underwater Applications, PHENMA 2013
Source PublicationSpringer Proceedings in Physics
Volume152
Pages109-120
Conference Date6 5, 2013 - 6 8, 2013
Conference PlaceKaohsiung, Taiwan
Abstract

Dielectric, X-ray, Mössbauer and magnetization studies of (1-x)PbFe0.5B0.5O3– (x)PbTiO3 (B = Nb, Ta) ceramics from the 0 < x < 0.3 range have been carried out. Addition of PbTiO3 to PbFe0.5B0.5O3 increases the temperature Tm of the permittivity maximum, decreases the diffusion of this maximum and lowers the Neél temperature TN. However above a certain compositional threshold (x ≈ 0.1) fast lowering of TN stops and a new magnetic state stable in a rather wide compositional range appears. Large difference between the zero-field cooled and fieldcooled magnetization-temperature curves as well as between the temperatures of magnetic phase transition determined from Mössbauer and magnetization studies for compositions with x > 0.1 implies that this state is a spin glass phase.

DOI10.1007/978-3-319-03749-3_9
URLView the original
Language英語English
WOS IDWOS:000390951900009
Scopus ID2-s2.0-84927634280
Fulltext Access
Citation statistics
Document TypeConference paper
CollectionUniversity of Macau
Affiliation1.Siberian Federal University
2.National Taiwan University of Science and Technology
3.Southern Federal University
4.Universidade de Macau
5.Kirensky Institute of Physics, Siberian Branch, Russian Academy of Sciences
Recommended Citation
GB/T 7714
Raevski I.P.,Kubrin S.P.,Blazhevich A.V.,et al. Studies of ferroelectric and magnetic phase transitions in multiferroic PbFe0.5B0.5O3–PbTiO3 (B = Nb, Ta) solid solution ceramics[C], 2014, 109-120.
APA Raevski I.P.., Kubrin S.P.., Blazhevich A.V.., Molokeev M.S.., Misjul S.V.., Eremin E.V.., Chen H.., Chou C.-C.., Sitalo E.I.., Raevskaya S.I.., Titov V.V.., Sarychev D.A.., Malitskaya M.A.., & Zakharchenko I.N. (2014). Studies of ferroelectric and magnetic phase transitions in multiferroic PbFe0.5B0.5O3–PbTiO3 (B = Nb, Ta) solid solution ceramics. Springer Proceedings in Physics, 152, 109-120.
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