Search Results - "Drozhzhin, O. A"

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  1. 1

    Features of the Synthesis of Functional Carbon Materials from Plant Carbohydrates by Bobyleva, Z. V., Apostolova, M. O., Lakienko, G. P., Alekseeva, A. M., Drozhzhin, O. A., Antipov, E. V.

    “…Technology of the synthesis of carbon materials from the most common carbohydrates in nature, glucose and cellulose, is discussed. The chemical transformations…”
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    Journal Article
  2. 2

    Crystal Structure of the Novel Complex Cobalt Oxide Sr0.7Y0.3CoO2.62 by Istomin, S. Ya, Grins, J, Svensson, G, Drozhzhin, O. A, Kozhevnikov, V. L, Antipov, E. V, Attfield, J. P

    Published in Chemistry of materials (21-10-2003)
    “…The perovskite-related crystal structure of the compound Sr0.7Y0.3CoO2.62 was determined and refined using synchrotron X-ray and neutron powder diffraction, in…”
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  3. 3

    Structure and Electrochemical Properties of Cathode Materials (Na3V2 ‒xScx(PO4)3) for Sodium-Ion Batteries by Perfilyeva, T. I., Alekseeva, A. M., Drozhzhin, O. A., Antipov, E. V.

    Published in Russian journal of electrochemistry (01-07-2023)
    “…Solid solutions Na 3 V 2 − x Sc x (PO 4 ) 3 (0 < x < 2) are synthesized by the sol-gel method followed by annealing in inert atmosphere. The structure of Na 3…”
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  4. 4

    Preparation of battery-grade LiFePO4 by the precipitation method: a review of specific features by Babkin, A. V., Kubarkov, A. V., Styuf, E. A., Sergeyev, V. G., Drozhzhin, O. A., Antipov, E. V.

    Published in Russian chemical bulletin (2024)
    “…The precipitation method is an efficient, economically feasible, and reproducible synthetic route to cathode materials for lithium-ion batteries with…”
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  5. 5

    Improving the Electrochemical Properties of a Cathode Material Based on Lithium–Manganese Phosphate through the Partial Substitution of Mn for Ni by Drozhzhin, O A, Zharikova, E V, Lakienko, G P, Rozova, M G, Antipov, E V

    Published in Nanotechnologies in Russia (01-12-2023)
    “…Lithium and transition-metal phosphates are promising cathode materials for lithium-ion batteries. Lithium manganese phosphate LiMnPO4 has a higher specific…”
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  6. 6

    Electrochemical Activity of a Ni2+/Ni3+ Redox-Couple in Polyanionic Cathode Materials of Different Structure Types by Drozhzhin, O. A., Alekseeva, A. M., Tyablikov, O. A., Marenko, A. P., Antipov, E. V.

    Published in Russian journal of electrochemistry (01-11-2022)
    “…Electrochemical properties of nickel-containing polyanionic cathode materials for metal-ion batteries crystallized in three structure types (olivine, NASICON,…”
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  7. 7

    Single-, Double-, and Multi-Walled Carbon Nanotubes as Electrically Conductive Additives to Lithium-Ion Battery Cathodes by Babkin, A. V., Kubarkov, A. V., Drozhzhin, O. A., Urvanov, S. A., Filimonenkov, I. S., Tkachev, A. G., Mordkovich, V. Z., Sergeyev, V. G., Antipov, E. V.

    Published in Doklady. Chemistry (2023)
    “…The characteristics of lithium iron phosphate cathodes containing various types of commercially available carbon nanotubes—single-walled (SWCNTs),…”
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  8. 8

    Lithium-Ion Electrochemical Energy Storage: the Current State, Problems, and Development Trends in Russia by Antipov, E. V., Abakumov, A. M., Drozhzhin, O. A., Pogozhev, D. V.

    Published in Thermal engineering (01-04-2019)
    “…Analysis of the state and trends of the world market of lithium-ion batteries (LIB) is carried out, and the main development trends are identified. Until…”
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  9. 9

    Li-ion diffusion in LixNb9PO25 by Drozhzhin, O.A., Vorotyntsev, M.A., Maduar, S.R., Khasanova, N.R., Abakumov, A.M., Antipov, E.V.

    Published in Electrochimica acta (01-02-2013)
    “…► Li-ion diffusion in LixNb9PO25 was studied using different experimental techniques. ► We compared several methods of calculating of chemical diffusion…”
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  10. 10

    Improving salt-to-solvent ratio to enable high-voltage electrolyte stability for advanced Li-ion batteries by Drozhzhin, O.A., Shevchenko, V.A., Zakharkin, M.V., Gamzyukov, P.I., Yashina, L.V., Abakumov, A.M., Stevenson, K.J., Antipov, E.V.

    Published in Electrochimica acta (10-02-2018)
    “…High-voltage stability of LiBF4 - propylene carbonate solutions in intermediate concentration range is studied by means of cyclic voltammetry, galvanostatic…”
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  11. 11

    Neutron diffraction analysis of structural transformations in lithium-ion batteries by Bobrikov, I. A., Samoylova, N. Yu, Balagurov, D. A., Ivanshina, O. Yu, Drozhzhin, O. A., Balagurov, A. M.

    Published in Russian journal of electrochemistry (01-02-2017)
    “…The possibilities of using neutron diffraction in real-time studies of structural transformations occurring in crystalline functional materials during the…”
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  12. 12

    Electrodeposition of Fe x Se y films from acidic solutions by Laurinavichyute, V. K., Bakhtenkova, S. E., Drozhzhin, O. A., Kazakov, S. M., Antipov, E. V.

    Published in Russian journal of electrochemistry (01-11-2016)
    “…Iron selenide (FexSey) thin films were electrodeposited on a glassy carbon electrode (GCE) surface under constant potential and pulse potential modes. The…”
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  13. 13

    Structure and high-temperature properties of the (Sr,Ca,Y)(Co, Mn)O3−y perovskites — perspective cathode materials for IT-SOFC by Napolsky, Ph.S., Drozhzhin, O.A., Istomin, S.Ya, Kazakov, S.M., Antipov, E.V., Galeeva, A.V., Gippius, A.A., Svensson, G., Abakumov, A.M., Van Tendeloo, G.

    Published in Journal of solid state chemistry (01-08-2012)
    “…Oxygen deficient perovskites Sr0.75Y0.25Co1−xMnxO3−y, x=0.5 and 0.75, were prepared by using the citrate route at 1373–1573K for 48h. The cubic Pm-3m…”
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  14. 14

    Thermal expansion behavior and high-temperature transport properties of Sr3YCo4−xFexO10.5+y, x=0.0, 1.0, 2.0 and 3.0 by Istomin, S.Ya, Drozhzhin, O.A., Napolsky, Ph.S., Putilin, S.N., Gippius, A.A., Antipov, E.V.

    Published in Solid state ionics (15-09-2008)
    “…High-temperature X-ray diffraction revealed peculiarities of thermal expansion of Sr3YCo4O10.5 with tetragonal 314-structure such as anisotropy of the lattice…”
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    Application of valence-to-core X-ray emission spectroscopy for identification and estimation of amount of carbon covalently bonded to chromium in amorphous Cr-C coatings prepared by magnetron sputtering by Safonov, V.A., Habazaki, H., Glatzel, P., Fishgoit, L.A., Drozhzhin, O.A., Lafuerza, S., Safonova, O.V.

    Published in Applied surface science (01-01-2018)
    “…•Magnetron sputtered Cr-C coatings (MSC) contain covalently bounded and free carbon.•Vtc-XES method allows the amount of covalently bounded carbon in MSC to be…”
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  17. 17

    The effect of synthesis conditions on the morphology, cation disorder and electrochemical performance of Li1+xNi0.5Mn0.5O2 by Kurilenko, K.A., Shlyakhtin, O.A., Brylev, O.A., Drozhzhin, O.A.

    Published in Electrochimica acta (10-01-2015)
    “…[Display omitted] •The variation of the Li introduction temperature at fixed time and temperature of final processing allows the grain size of…”
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  18. 18

    The effect of synthesis conditions on the morphology, cation disorder and electrochemical performance of Li sub(1+x)Ni sub(0.5)Mn sub(0.5)O sub(2) by Kurilenko, KA, Shlyakhtin, O A, Brylev, O A, Drozhzhin, O A

    Published in Electrochimica acta (10-01-2015)
    “…Li sub(1+x)Ni sub(0.5)Mn sub(0.5)O sub(2) (x less than or equal to 0.4) powders are synthesized from coprecipitated (Ni,Mn) hydroxides with different…”
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  19. 19

    Novel synthetic approaches to LiCoBO3 cathode material and its electrochemical properties by Drozhzhin, O.A., Tereshchenko, I.V., Antipov, E.V.

    Published in Ceramics international (01-04-2017)
    “…Novel synthetic approaches were employed to obtain LiCoBO3-based cathode materials for Li-ion batteries. Borate samples comprising different morphologies and…”
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  20. 20

    Electrodeposition of FexSey films from acidic solutions by Laurinavichyute, V. K., Bakhtenkova, S. E., Drozhzhin, O. A., Kazakov, S. M., Antipov, E. V.

    Published in Russian journal of electrochemistry (01-11-2016)
    “…Iron selenide (Fe x Se y ) thin films were electrodeposited on a glassy carbon electrode (GCE) surface under constant potential and pulse potential modes. The…”
    Get full text
    Journal Article