Search Results - "Kupriyanov, M.F."

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  1. 1

    The properties of the non-stoichiometric ceramics (1−x)PbMg1/3Nb2/3O3–(x)PbTiO3 by Surowiak, Z., Kupriyanov, M.F., Panich, A.E., Skulski, R.

    Published in Journal of the European Ceramic Society (01-01-2001)
    “…(1-x)PMN-(x)PT ceramics with x less than or equal to 0.15 were obtained and the dielectric and electromechanical properties investigated. With increasing x,…”
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    Journal Article
  2. 2

    Structure and lattice dynamics of solid solutions by Teslenko, P. Yu, Razumnaya, A.G, Ponomarenko, V.O, Rudskaya, A.G, Nazarenko, A.V, Anokhin, A.S, Avramenko, M.V, Levshov, D.I, Kupriyanov, M.F, Yuzyuk, Yu. I

    Published in Physics of the solid state (01-09-2014)
    “…The structures and the dynamic characteristics of the lattices of two compositions of solid solutions of multiferroic BiFe[O.sub.3] with ferroelectric…”
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    Journal Article
  3. 3

    Specific features of structural states in the BiFe[O.sub.3]-YMn[O.sub.3] solid solutions by Nazarenko, A.V, Razumnaya, A.G, Kupriyanov, M.F, Kabirov, Yu. V, Rudskaya, A.G, Teslenko, P. Yu, Kofanova, N.B

    Published in Physics of the solid state (01-08-2011)
    “…The (1 - x)BiFe[O.sub.3]-xYMn[O.sub.3] solid solutions have been found to undergo the following sequence of phase transformations with increasing x: R3c → Pbnm…”
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  4. 4

    Properties of nanocrystalline ferroelectric PZT ceramics by Surowiak, Z, Kupriyanov, M.F, Czekaj, D

    “…Amorphous nanopowders of Pb(Zr 0.5Ti 0.5)O 3 (PZT) solid solution were obtained by sol-gel processing. As-obtained nanopowders ( r ̄ ≈30×10 −9 m) underwent…”
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  5. 5

    Structure and phase transitions of lead zirconate hafnate solid solutions by Kabirov, Yu. V., Kupriyanov, M. F., Petrovich, E. V., Duimakaev, Sh. I., Ponomarenko, V. O.

    Published in Physics of the solid state (2011)
    “…Solid solutions of two antiferroelectrics, namely, lead zirconate and lead hafnate, i.e., PbZr 1 − x Hf x O 3 ( x = 0, 0.3, 0.5, 0.7, 1.0), have been prepared…”
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  6. 6

    The properties of the non-stoichiometric ceramics (1− x)PbMg 1/3Nb 2/3O 3–( x)PbTiO 3 by Surowiak, Z., Kupriyanov, M.F., Panich, A.E., Skulski, R.

    “…(1− x)PbMg 1/3Nb 2/3O 3–( x)PbTiO 3 i.e. (1− x)PMN–( x)PT ceramics with x⩽0.15 have been obtained and investigated. With increasing x the temperature T m…”
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  7. 7

    Thermal dependence of pyroelectric parameters of PZT-based multi-component electroceramics by Czekaj, D., Lisińska-Czekaj, A., Surowiak, Z., Ilczuk, J., Kupriyanov, M.F., Zakharov, Yu.N.

    “…Five-component electroceramics based on solid solution PbTiO 3–PbZrO 3–PbNb 2/3Zn 1/3O 3–PbSb 2/3Mn 1/3O 3–PbNb 2/3Mn 1/3O 3 was studied. The chemical…”
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  8. 8

    Peculiarities of PMN structure below temperature of relaxor phase transition by Lebedinskaya, A.R, Kupriyanov, M.F, Skulski, R

    “…The results of investigations of PMN single crystal atomic structure at temperatures 103, 183 and 203 K (i.e. below the temperature of dielectric permittivity…”
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  9. 9

    Influence of cyclic phase transitions on some properties of the ferroelectric perovskites by Surowiak, Z, Gavrilyachenko, S.V, Skulski, R, Kupriyanov, M.F, Bochenek, D

    Published in Journal of the European Ceramic Society (01-10-2002)
    “…The results of investigations of the influence of cyclic phase transitions on certain properties of the ferroelectric perovskites are presented. The materials…”
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  10. 10

    A Study of PMN Crystal Structure Below The Phase Transition Temperature by Lebedinskaya, A.R., Kupriyanov, M.F.

    Published in Phase transitions (2002)
    “…X-ray diffraction studies of PMN crystal at 103, 183, 203 K show that the disorder in shifts of Pb atoms below T m develops successively with lowering…”
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