Search Results - "Patrakeev, M.V."

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    Tubular Thermoelectric Module Based on Oxide Elements Grown by the Laser Floating Zone by Merkulov, O.V, Lopes, D, Markov, A.A, Ferreira, N.M, Patrakeev, M.V, Kovalevsky, A.V

    Published in ACS applied energy materials (28-06-2021)
    “…This work seeks possibilities for advancing the thermoelectric oxide technology by exploring a module design involving materials produced by laser processing…”
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    Electrical Properties of the Ferrite SrFeOy at High Temperatures by Kozhevnikov, V.L., Leonidov, I.A., Patrakeev, M.V., Mitberg, E.B., Poeppelmeier, K.R.

    Published in Journal of solid state chemistry (01-05-2001)
    “…The electrical properties of the strontium ferrite are reported within the temperature range 700 to 950°C and the oxygen partial pressure range between 10−18…”
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    Oxygen nonstoichiometry, electrical conductivity, and electrochemical activity of La0.45Ce0.05Sr0.5FeO3−δ by Nikitin, S.S., Dyakina, M.S., Tsipis, E.V., Patrakeev, M.V.

    Published in Journal of power sources (30-03-2024)
    “…The crystal structure, thermal expansion, oxygen nonstoichiometry, electrical conductivity, and electrode properties under anodic and cathodic polarization of…”
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    Defect equilibrium and charge transport in R0.25Sr0.75FeO3−δ (R = La, Nd, Y, Ho): The effect of cation type by Koryakov, A.D., Nikitin, S.S., Merkulov, O.V., Markov, A.A., Shalaeva, E.V., Leonidov, I.A., Patrakeev, M.V.

    Published in Journal of alloys and compounds (15-03-2023)
    “…The perovskite-type oxides of R0.25Sr0.75FeO3−δ series for R = La, Nd, Y, Ho were subjected to X-ray and electron diffraction studies, thermogravimetric and…”
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    Influence of synthesis temperature on oxygen exchange behavior of electrode material PrBaFe2O6−δ by Zavyalov, M.A., Nikitin, S.S., Merkulov, O.V., Shalaeva, E.V., Patrakeev, M.V.

    Published in Solid state ionics (01-11-2023)
    “…PrBaFe2O6−δ attracts attention as a promising material for electrode development for solid oxide fuel cells. A comparative study of the structure, oxygen…”
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    Self-supported oxygen carrier SrFe12O19 for chemical looping: thermodynamic analysis, kinetics and redox stability by Ryzhov, D.A., Shamsutov, I.V., Patrakeev, M.V., Zavyalov, M.A., Merkulov, O.V.

    Published in Solid state sciences (01-03-2024)
    “…A key challenge for the further progress of chemical looping and its introduction into industrial processes is the development of effective functional…”
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