Search Results - "Makoed, I.I."

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  2. 2

    Influence of rare-earth doping on the structural and magnetic properties of orthoferrite La0.50R0.50FeO3 ceramics obtained under high pressure by Makoed, I.I., Liedienov, N.A., Zhao, Hao, Levchenko, G.G., Amirov, A.A., Rymski, G.S., Zhivulko, A.M., Yanushkevich, K.I.

    “…Studies on the impact of co-doping on the structural, magnetic, and magnetocaloric properties of LaFeO3 orthoferrite-based compounds with partial isovalent…”
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    Journal Article
  3. 3

    Liquid-phase sintered bismuth ferrite multiferroics and their giant dielectric constant by Liedienov, N.A., Pashchenko, A.V., Turchenko, V.A., Sycheva, V.Ya, Voznyak, A.V., Kladko, V.P., Gudimenko, A.I., Tatarchuk, D.D., Didenko, Y.V., Fesych, I.V., Makoed, I.I., Kozakov, A.T., Levchenko, G.G.

    Published in Ceramics international (15-08-2019)
    “…Rapid liquid-phase sintering method has been modified and used to synthesize Bi1-xLaxFeO3-δ compositions (0 ≤ x ≤ 0.5). The temperature and sintering…”
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    Journal Article
  4. 4

    Evolution of structure and magnetic properties in EuxBi1−xFeO3 multiferroics obtained under high pressure by Makoed, I.I., Amirov, A.A., Liedienov, N.A., Pashchenko, A.V., Yanushkevich, K.I., Yakimchuk, D.V., Kaniukov, E.Yu

    “…•EuBFO ceramics was prepared by solid-state reaction method under high pressure 4 GPa.•Phase transition from R3c to Pn21a is observed at concentration of…”
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    Journal Article
  5. 5

    Predicted model of magnetocaloric effect in BiFeO3-based multiferroics by Makoed, I.I., Amirov, A.A., Liedienov, N.A., Pashchenko, A.V., Yanushkevich, K.I.

    Published in Solid state sciences (01-09-2019)
    “…Structure, magnetic properties and magnetocaloric effect in synthesized Bi-based multiferroics with a partial isovalent substitution of bismuth (III) cations…”
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    Journal Article
  6. 6

    Structure, non-stoichiometry, valence of ions, dielectric and magnetic properties of single-phase Bi0.9La0.1FeO3−δ multiferroics by Pashchenko, A.V., Liedienov, N.A., Li, Quanjun, Tatarchuk, D.D., Turchenko, V.A., Makoed, I.I., Sycheva, V.Ya, Voznyak, A.V., Kladko, V.P., Gudimenko, A.I., Didenko, Y.V., Kozakov, A.T., Levchenko, G.G.

    “…[Display omitted] •Real molar formulas for BiFeO3−δ and Bi0.9La0.1FeO3−δ multiferroics were determined.•Real structure contains Bi3+, La3+, Fe2+, Fe3+, O2−…”
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    Journal Article
  7. 7

    Influence of rare-earth doping on the structural and dielectric properties of orthoferrite La0.50R0.50FeO3 ceramics synthesized under high pressure by Makoed, I.I., Liedienov, N.A., Pashchenko, A.V., Levchenko, G.G., Tatarchuk, D.D., Didenko, Y.V., Amirov, A.A., Rimski, G.S., Yanushkevich, K.I.

    Published in Journal of alloys and compounds (25-11-2020)
    “…The effect of co-doping on the structural and dielectric properties of the La0.50R0.50FeO3 orthoferrites for a full number of substitutions (R = Ce–Lu) has…”
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    Journal Article
  8. 8

    Control of dielectric properties in bismuth ferrite multiferroic by compacting pressure by Pashchenko, A.V., Liedienov, N.A., Li, Quanjun, Makoed, I.I., Tatarchuk, D.D., Didenko, Y.V., Gudimenko, A.I., Kladko, V.P., Jiang, Lina, Li, Liping, Pogrebnyak, V.G., Levchenko, G.G.

    Published in Materials chemistry and physics (15-01-2021)
    “…Single-phase lanthanum-modified bismuth ferrite multiferroic ceramics have been synthesized by the rapid liquid-phase sintering (RLS) method. Phase…”
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    Journal Article
  9. 9

    Specific features of the evolution of magnetic properties of bismuth ferrite modified with rare-earth element cations by Makoed, I. I., Revinskii, A. F.

    Published in Physics of the solid state (01-09-2015)
    “…The dependences of magnetic properties of multiferroics obtained upon isovalent substitution of bismuth cations in the BiFeO 3 sample by rare-earth metal…”
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    Journal Article
  10. 10

    Ab initio calculations of the lattice dynamics and the ferroelectric instability of the BiFe[O.sub.3] multiferroic by Ravinski, A.F, Triguk, V.V, Makoed, I.I

    Published in Physics of the solid state (01-09-2014)
    “…The pressure dependences of the vibration frequencies of the bismuth ferrite crystal lattice in the ferroelectric and paraelectric rhombohedral phases have…”
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    Journal Article
  11. 11

    Heat Capacity of Nanostructured Multiferroics Bi[Fe.sub.1- x][Zn.sub.x][O.sub.3] by Amirov, A.A, Kallaev, S.N, Omarov, Z.M, Yusupov, D.M, Chaudhary, Y.A, Bendre, S.T, Makoed, I.I

    Published in Physics of the solid state (01-09-2017)
    “…The heat capacity of ceramic Bi[Fe.sub.1-x][Zn.sub.x][O.sub.3] multiferroics has been studied in the temperature range 150-750 K. It is found that the…”
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    Journal Article
  12. 12

    Magnetic Properties of Multiferroics [Bi.sub.1-x][Sm.sub.x]Fe[O.sub.3] Synthesized under High Pressure by Makoed, I.I, Ravinski, A.F, Lazenka, V.V, Galyas, A.I, Demidenko, O.F, Zhivulko, A.M, Yanushkevich, K.I, Moshchalkov, V.V

    Published in Physics of the solid state (01-08-2017)
    “…The magnetic properties of the multiferroics obtained upon isovalent substitution of samarium cations for bismuth cations in BiFe[O.sub.3]. The samples have…”
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    Journal Article
  13. 13

    Electronic structure and improper electric polarization of samarium orthoferrite by Triguk, V. V., Makoed, I. I., Ravinski, A. F.

    Published in Physics of the solid state (01-12-2016)
    “…The band structure and distributions of the electron and spin densities of samarium orthoferrite have been calculated within the framework of the…”
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    Journal Article
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    Dielectric Properties of Spinel, Garnet and Perovskite Oxides by Danilkevitch, M.I., Makoed, I.I.

    Published in Physica status solidi. B. Basic research (01-11-2000)
    “…We suggest a definition of the effective ionic charges q*i of different pairs of ions connected in tetrahedral, octahedral and dodecahedral polyhedra in such…”
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    Journal Article
  16. 16

    Magnetoelectric coupling and lattice dynamics of Gd-doped BiFeO3 multiferroics by Tryhuk, V.V., Ravinski, A.F., Makoed, I.I., Lazenka, V.V., Januszkiewicz, K.I.

    “…The Bi 1−x Gd x FeO 3 (x = 0 − 0.2) ceramics were prepared by a solid-state reaction technique. Studies of magnetic and magnetoelectric properties were carried…”
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    Conference Proceeding