Search Results - "Leonova, L.S."

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  1. 1

    Features of proton transport in composite electrolytes based on acid ammonium salt of 12-phosphotungstic acid and calixarene by Shmygleva, L.V., Leonova, L.S., Kayumov, R.R., Shilov, G.V.

    Published in Solid state ionics (01-04-2022)
    “…The physicochemical properties of composite solid electrolytes based on acid ammonium salt of 12-phosphotungstic acid and calixarene sulfonic acid with uniform…”
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    Journal Article
  2. 2
  3. 3

    Morphology and electrochemical characterization of LaSrCuO 4 − δ |Ce 0.9Gd 0.1O 2 − δ interface by Mazo, G.N., Lyskov, N.V., Leonova, L.S.

    Published in Solid state ionics (2011)
    “…The electrochemical properties of LaSrCuO 4 − δ (LSCO) electrode screen-printed on Ce 0.9Gd 0.1O 2 − δ (CGO) electrolyte have been investigated. The morphology…”
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  4. 4

    Electrochemical characterization of Pr2CuO4 cathode for IT-SOFC by Lyskov, N.V., Kaluzhskikh, M.S., Leonova, L.S., Mazo, G.N., Istomin, S.Ya, Antipov, E.V.

    Published in International journal of hydrogen energy (01-12-2012)
    “…The electrochemical properties of Pr2CuO4 (PCO) electrode screen-printed on Ce0.9Gd0.1O1.95 (CGO) electrolyte were investigated. PCO was synthesized by a…”
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  5. 5

    Influence of structural arrangement of R2O2 slabs of layered cuprates on high-temperature properties important for application in IT-SOFC by Mazo, G.N., Kazakov, S.M., Kolchina, L.M., Istomin, S.Ya, Antipov, E.V., Lyskov, N.V., Galin, M.Z., Leonova, L.S., Fedotov, Yu.S., Bredikhin, S.I., Liu, Yi, Svensson, G., Shen, Z.

    Published in Solid state ionics (01-04-2014)
    “…Layered cuprates Pr2−xSrxCuO4-δ with T* (x=0.3, 0.4) and T (x=1.0, 1.3) structures were prepared in air at 1273–1373K. Oxygen content (4−δ) of the as-prepared…”
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  6. 6

    Proton conduction of Ba 6Mn 24O 48 tunnel manganite by Pomerantseva, E.A., Leonova, L.S., Goodilin, E.A., Dobrovolsky, Yu.A., Tretyakov, Yu.D.

    Published in Solid state ionics (2009)
    “…A protonated Ba 6Mn 24O 48 phase with an original tunnel crystal structure and mixed-valent manganese has been prepared in the form of powders and…”
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  7. 7

    Proton conduction of Ba6Mn24O48 tunnel manganite by Pomerantseva, E.A., Leonova, L.S., Goodilin, E.A., Dobrovolsky, Yu.A., Tretyakov, Yu.D.

    Published in Solid state ionics (09-03-2009)
    “…A protonated Ba6Mn24O48 phase with an original tunnel crystal structure and mixed-valent manganese has been prepared in the form of powders and millimeter-long…”
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  8. 8

    Impedance of boundaries bi-ionic oxide vanadium bronzes/Na +-conducting solid electrolytes by Bukun, N.G, Nadkhina, S.E, Leonova, L.S, Levchenko, A.V, Kolesnikova, A.M, Osadchii, E.G

    Published in Solid state ionics (30-04-2004)
    “…Bi-ionic oxide bronzes of the A x BO y type (A=Na, Ca, Na–Ca, Sr, Na–Sr; B=V) were synthesized by solid state method. The values of partial electronic…”
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  9. 9

    Impedance of the Na+ solid electrolyte/perovskite electrode interface in an O2-containing atmosphere by Bukun, N.G, Tkacheva, N.S, Leonova, L.S

    Published in Solid state ionics (01-04-1999)
    “…The behaviour of the SmCo0.8Ti0.2O3/Na5TbSi4O12 interface in argon and oxygen atmospheres at 250–300°C was studied using the impedance spectroscopy method. An…”
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  10. 10

    Temperature-Dependent Structure–Energy Changes in Crystals of Compounds with Poly(hydroxymethyl) Grouping by Golovina, N.I., Raevskii, A.V., Fedorov, B.S., Chukanov, N.V., Shilov, G.V., Leonova, L.S., Tarasov, V.P., Erofeev, L.N.

    Published in Journal of solid state chemistry (01-03-2002)
    “…Crystals of tris(hydroxymethyl)nitromethane (1) and tris(hydroxymethyl)aminomethane (2) were prepared and grown at room temperature. X-ray analysis was used to…”
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  11. 11

    Computer simulation of the structure and proton transport in orthoiodates by Zyubina, T.S, Shilov, G.V, Dobrovolsky, Yu.A, Atovmyan, L.O, Chernyak, A.V, Leonova, L.S, Ukshe, A.E

    Published in Solid state ionics (01-12-2001)
    “…The crystal structure and properties of CsH 4IO 6·H 5IO 6 have been studied by electrochemistry, X-ray methods, and calculated by density functional theory…”
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