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      Dielectric Properties of Spinel, Garnet and Perovskite Oxides 

      Danil’kevich, M. I.; Makoed, I. I. (John Wiley & Sons, Incorporated, 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 oxide crystals as spinels, garnets and perovskites. The electronic ...
      2020-12-18
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      Heat capacity of nanostructured multiferroics BiFe1–x Zn x O3 

      Amirov, A. A.; Kallaev, S. N.; Omarov, Z. M.; Yusupov, D. M.; Chaudhary, Y. A.; Bendre, S. T.; Makoed, I. I. (MAIK Nauka/Interperiodica, 2017-09-20)
      The heat capacity of ceramic BiFe1–x Zn x O3 multiferroics has been studied in the temperature range 150–750 K. It is found that the antiferromagnetic transition temperature T N slightly shifts to lower temperatures as the ...
      2020-09-18
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      Influence of rare-earth doping on the structural and dielectric properties of orthoferrite La0.50R0.50FeO3 ceramics synthesized under high pressure 

      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. (Elsevier B.V, 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 ј CeeLu) has been experimentally and theoretically studied using X-ray diffraction, ...
      2020-12-15
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      Magnetic properties and electronic structure of Bi0.75Sm0.25FeO3 multiferroic 

      Ravinski, A. F.; Makoed, I. I.; Triguk, V. V.; Lazenka, V. V.; Galyas, A. I.; Demidenko, О. F.; Yanushkevich, K. I.; Moshchalkov, V. V. (Elsevier, 2018-03)
      Room temperature multiferroic Bi0.75Sm0.25FeO3 samples were synthesized using a solid-state reaction method under high-pressure conditions (∼4 GPA). The calculations of band structure, electronic and spin densities ...
      2020-09-18
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      Magnetocaloric Effect in BiFe1−xZnxO3 Multiferroics 

      Amirov, A. A.; Makoed, I. I.; Chaudhari, Y. A.; Bendre, S. T.; Yusupov, D. M.; Asvarov, A. Sh.; Liedienov, N. A.; Pashchenko, A. V. (Springer Verlag, 2018-02-10)
      Ceramic 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, ...
      2020-09-18
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      Magnetoelectric Properties of Zinc-Substituted BiFeO3 Multiferroics 

      Yusupov, D. M.; Amirov, A. A.; Makoed, I. I.; Chaudhary, Y. A.; Bendre, S. T. (компания "Плеадес Паблишинг, Лтд, 2020)
      The magnetoelectric properties of ceramic samples of BiFe1–xZnxO3 and Bi1–xZnxFe1–xZnxO3 multiferroics have been studied in magnetic fields from 0 to 80 kOe at room temperature. All the samples have the linear dependences ...
      2020-12-15
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      Structural transformation and magnetoelectric behaviour in Bi1−xGdxFeO3 multiferroics 

      Lazenka, V. V.; Zhang, G .; Vanacken, J.; Makoed, I. I.; Ravinski, A. F .; Moshchalkov, V. V. (American Institute of Physics, 2012)
      The crystal structure, dielectric, magnetic and magnetoelectric (ME) properties of Bi1−xGdxFeO3 (BGFO, x = 0, 0.05, 0.1, 0.15, 0.2) multiferroic ceramics have been studied. The substitution of bismuth by gadolinium induces ...
      2020-12-17
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      Structure and dielectric properties of Bi0.80Gd0.20-xLaxFeO3 multiferroics 

      Makoed, I. I.; Ravinski, A. F.; Gorbachuk, N. I.; Pashchenko, A. V.; Liedienov, N. A.; Amirov, A. A.; Yusupov, D. M.; Janushkevich, K. I. (Springer Verlag, 2018-06-02)
      The structural and dielectric properties of Bi0.80Gd0.20–xLa x FeO3 (x = 0–0.20) samples are studied by means of X-ray diffraction and dielectric spectroscopy. Room-temperature dielectric functions are examined experimentally ...
      2020-09-18
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      Weak ferromagnetism in La-doped BiFeO3 multiferroics thin films 

      Lazenka, V. V.; Ravinski, A. F.; Makoed, I. I.; Vanachen, J.; Zhang, G .; Moshchalkov, V. V. (American Institute of Physics, 2012)
      Bi1xLaxFeO3 thin films (x ¼ 0.0, 0.3, 0.5) were grown on glass substrates by thermal physical vapor deposition. The monoclinically distorted crystal structure of the films was revealed by x-ray diffraction at room ...
      2020-12-17