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Synthesis and broadband dielectric-infrared spectroscopy of La.sub.1-x./sub.Sr.sub.x./sub.MnO.sub.3./sub.@BaTiO.sub.3./sub. nanocomposite

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    0545204 - FZÚ 2022 RIV GB eng J - Journal Article
    Nuzhnyy, Dmitry - Bovtun, Viktor - Savinov, Maxim - Kempa, Martin - Petzelt, Jan - Kaman, Ondřej - Klementová, Mariana - Kuličková, Jarmila - Jirák, Zdeněk
    Synthesis and broadband dielectric-infrared spectroscopy of La1-xSrxMnO3@BaTiO3 nanocomposite.
    Materials Research Bulletin. Roč. 144, Dec (2021), č. článku 111459. ISSN 0025-5408. E-ISSN 1873-4227
    R&D Projects: GA MŠMT(CZ) EF16_019/0000760; GA ČR(CZ) GA21-06802S; GA MŠMT(CZ) LM2018096; GA MŠMT LM2018110
    Grant - others:OP VVV - SOLID21(XE) CZ.02.1.01/0.0/0.0/16_019/0000760
    Institutional support: RVO:68378271
    Keywords : core-shell multiferroic nanocomposite * DC resistance and magnetoresistance * broadband dielectric spectroscopy * effective medium modelling
    OECD category: Condensed matter physics (including formerly solid state physics, supercond.)
    Impact factor: 5.600, year: 2021
    Method of publishing: Limited access
    https://doi.org/10.1016/j.materresbull.2021.111459

    The study deals with design, structural and magnetic characterization, electric and magnetoelectric transport and broad-band dielectric spectroscopy of the all-perovskite core-shell composite nanoceramics of 0-3 connectivity, in which ~50 nm cores of ferromagnetic La0.65Sr0.35MnO3 (LSMO) metal are embedded in ferroelectric BaTiO3 (BTO) shells of mean 13 nm thickness. The BTO spacers lead to significant barriers for itinerant carriers, at low temperatures being transmitted by tunneling, but additional conduction paths are temperature activated by hopping across them. The dielectric, terahertz and infrared spectroscopy data of LSMO@BTO are modelled by effective medium approaches, which enables to explain the broad dielectric and AC conductivity dispersion. Temperature dependant terahertz transmission spectroscopy clearly indicates the ferroelectric transition in the nano-BTO shells in the same temperature range as in the bulk BTO.
    Permanent Link: http://hdl.handle.net/11104/0321968

     
     
Number of the records: 1  

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