Search Results - "Kuzov, A. V."

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  1. 1

    The Effect of Carbonaceous Material Morphology on Oxygen Reduction Reaction in Nonaqueous Electrolyte Containing Lithium Ions by Kuzov, A. V., Bogdanovskaya, V. A., Emets, V. V., Andreev, V. N.

    Published in Russian journal of electrochemistry (01-04-2022)
    “…The electrochemical characteristics of carbonaceous materials differing in their specific surface area and porosity are studied by the method of cyclic…”
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    Journal Article
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    Stability against Degradation and Activity of Catalysts with Different Platinum Load Synthesized at Carbon Nanotubes by Bogdanovskaya, V. A., Kuzov, A. V., Radina, M. V., Filimonov, V. Ya, Sudarev, G. M., Osina, M. A.

    Published in Russian journal of electrochemistry (01-12-2020)
    “…Platinum catalysts synthesized at carbon nanotubes with the noble metal content of 20 and 40 wt % are studied under model conditions and in cathodes of…”
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    Technical and Methodological Support for Studies of Radioactive Graphite-containing Sludge in Technological Reservoirs by Pavlyuk, A. O., Kotlyarevsky, S. G., Zaderyaka, A. A., Kuzov, V. A., Shevchenko, O. M., Zakharova, E. V., Volkova, A. G.

    Published in Radiochemistry (New York, N.Y.) (01-12-2022)
    “…The article reflects the problem of graphite-containing sludge accumulated, as deposit, in technological systems during the operation of uranium-graphite…”
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    Computer Simulation of the Cathode Active Layer in Hydrogen–Oxygen Fuel Cell with Polymer Electrolyte: The Nature of the Overall Current Variations by Chirkov, Yu. G., Andreev, V. N., Rostokin, V. I., Kuzov, A. V.

    Published in Russian journal of electrochemistry (01-04-2018)
    “…Full computer simulation of the cathode structure in hydrogen–oxygen fuel cell with polymer electrolyte is performed. Both transport, support grains…”
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  6. 6

    Comparative characteristics of cathodes with different catalytic systems in hydrogen–oxygen and hydrogen–air fuel cells with proton-conducting polymer electrolyte by Tarasevich, M. R., Bogdanovskaya, V. A., Kuzov, A. V., Radina, M. V.

    Published in Russian journal of electrochemistry (01-07-2017)
    “…The characteristics of low-temperature hydrogen–oxygen (air) fuel cell (FC) with cathodes based on the 50 wt % PtCoCr/C and 40 wt % Pt/CNT catalysts…”
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  7. 7

    Highly active and stable catalysts based on nanotubes and modified platinum for fuel cells by Bogdanovskaya, V. A., Kol’tsova, E. M., Tarasevich, M. R., Radina, M. V., Zhutaeva, G. V., Kuzov, A. V., Gavrilova, N. N.

    Published in Russian journal of electrochemistry (01-08-2016)
    “…Results on the development of new cathodic catalysts (monoplatinum and cobalt-modified platinum) applied on carbon nanotubes are shown. By means of a complex…”
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  8. 8

    Characteristics of non-platinum cathode catalysts for a hydrogen–oxygen fuel cell with proton- and anion-conducting electrolytes by Korchagin, O. V., Bogdanovskaya, V. A., Tarasevich, M. R., Kuzov, A. V., Zhutaeva, G. V., Radina, M. V., Novikov, V. T., Zharikov, V. V.

    Published in Catalysis in industry (01-07-2016)
    “…Cathode catalysts for a hydrogen–oxygen fuel cell (FC) with proton-conducting (acidic) and anion-conducting (alkaline) electrolytes are synthesized via the…”
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    Degradation processes in hydrogen–air fuel cell as a function of the operating conditions and composition of membrane–electrode assemblies by Kuzov, A. V., Tarasevich, M. R., Bogdanovskaya, V. A., Modestov, A. D., Tripachev, O. V., Korchagin, O. V.

    Published in Russian journal of electrochemistry (01-07-2016)
    “…The optimal composition of membrane–electrode assemblies and operating conditions of hydrogen–air fuel cells, which provide a high efficiency and stability of…”
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  11. 11

    Computer-aided simulation of the cathodic active layer in fuel cells with solid polymer electrolyte: the nature of overall current transient by Chirkov, Yu. G., Rostokin, V. I., Kuzov, A. V.

    Published in Russian journal of electrochemistry (01-02-2016)
    “…Total computer-aided simulation of the structure and current-generation processes in the cathodic active layer of a fuel cell with solid polymer electrolyte is…”
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  12. 12

    Lifetime prediction for the hydrogen–air fuel cells by Avakov, V. B., Bogdanovskaya, V. A., Kapustin, A. V., Korchagin, O. V., Kuzov, A. V., Landgraf, I. K., Stankevich, M. M., Tarasevich, M. R.

    Published in Russian journal of electrochemistry (01-06-2015)
    “…Degrading of membrane–electrode assemblies of hydrogen–air fuel cells during their long-term and accelerated stress testing is analyzed by complex of…”
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  13. 13

    Characteristics of HiSPEC13100-catalyst-based cathode (70Pt/C) for hydrogen–air fuel cell with proton-conducting polymer electrolyte by Avakov, V. B., Bogdanovskaya, V. A., Vasilenko, V. A., Ivanitskii, B. A., Kol’tsova, E. M., Kuzov, A. V., Kapustin, A. V., Landgraf, I. K., Stankevich, M. M., Tarasevich, M. R.

    Published in Russian journal of electrochemistry (01-08-2015)
    “…HiSPEC 13100-monoplatinum-catalyst-based cathode for hydrogen–air (hydrogen–oxygen) fuel cell with proton-conducting polymer membrane is studied. The cathodes…”
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    Catalysts of ethanol anodic oxidation for ethanol-air fuel cell with a proton-conducting polymer electrolyte by Kuzov, A. V., Tarasevich, M. R., Bogdanovskaya, V. A.

    Published in Russian journal of electrochemistry (01-04-2010)
    “…Synthesis techniques for binary PtSn, PdM (M = Sn, V, Mo) and ternary PtSnNi, PtRuSn catalysts of ethanol electrooxidation on highly dispersed carbon materials…”
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  17. 17

    Characteristics of membrane-electrode assemblies of hydrogen-air fuel cells with PtCoCr/C catalyst by Avakov, V. B., Bogdanovskaya, V. A., Ivanitskii, B. A., Kapustin, A. V., Kuzov, A. V., Landgraf, I. K., Modestov, A. D., Radina, M. V., Stankevich, M. M., Tarasevich, M. R., Tripachev, O. V.

    Published in Russian journal of electrochemistry (01-07-2014)
    “…A cathodic catalyst, which can replace monoplatinum commercial catalyst, is developed and investigated. New catalyst combines a smaller consumption of platinum…”
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