Search Results - "Sorokina, N. E."

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    Petroleum products and water sorption by expanded graphite enhanced with magnetic iron phases by Lutfullin, M.A., Shornikova, O.N., Vasiliev, A.V., Pokholok, K.V., Osadchaya, V.A., Saidaminov, M.I., Sorokina, N.E., Avdeev, V.V.

    Published in Carbon (New York) (01-01-2014)
    “…The liquid hydrocarbon sorption behavior of expanded graphite (EG) enhanced with iron phases (α-Fe, α-Fe2O3, Fe3O4, and FeOOH) was studied. Iron phases were…”
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    Journal Article
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    Problems of Balancing Supply and Demand in the Labor Market of the Republic of Mari El by Nizova, L. M., Sorokina, E. N.

    Published in Studies on Russian economic development (01-07-2019)
    “…The article analyzes the structure of employment in the economy of the Republic of Mari El. On the basis of monitoring the supply and demand of labor, such…”
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    Thermal decomposition of graphite nitrate by Saidaminov, M.I., Maksimova, N.V., Zatonskih, P.V., Komarov, A.D., Lutfullin, M.A., Sorokina, N.E., Avdeev, V.V.

    Published in Carbon (New York) (01-08-2013)
    “…A new technique for gas determination in the thermal decomposition of graphite nitrate II–IV stages has been reported. Its correctness was confirmed by…”
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    Surface modification of carbon fibers with nitric acid solutions by Tikhomirov, A. S., Sorokina, N. E., Avdeev, V. V.

    Published in Inorganic materials (01-06-2011)
    “…We have studied the surface modification of carbonized carbon fibers with nitric acid solutions, compared the effects of 60 and 98% HNO 3 , and examined the…”
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    The chemical vapor infiltration of exfoliated graphite to produce carbon/carbon composites by Tikhomirov, A.S., Sorokina, N.E., Shornikova, O.N., Morozov, V.A., Van Tendeloo, G., Avdeev, V.V.

    Published in Carbon (New York) (2011)
    “…The scheme of PC deposition depending on CVI conditions was proposed. Increasing of impulse duration and pressure provides dominating pyrocarbon infiltration…”
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    Thermophysical Properties of Carbon-Carbon Materials Based on Graphite Foam by Tikhomirov, A. S., Sorokina, N. E., Malakho, A. P., Shornikova, O. N., Filimonov, S. V., Avdeev, V. V.

    Published in Refractories and industrial ceramics (01-05-2016)
    “…Laser flashing and thermal analysis are used to determine thermal conductivity and linear thermal expansion coefficient of low density carbon-carbon materials…”
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    Thermal properties of high-porosity monoliths based on exfoliated graphite by Filimonov, S. V., Sorokina, N. E., Yashchenko, N. V., Malakho, A. P., Avdeev, V. V.

    Published in Inorganic materials (01-04-2013)
    “…High-porosity monoliths with densities in the range 50 to 300 kg/m 3 have been prepared by uniaxial pressing of exfoliated graphite and their thermophysical…”
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    Stability limits of graphite intercalation compounds in the systems graphite-HNO3(H2SO4)-H2O-KMnO4 by Sorokina, N. E., Shornikova, O. N., Avdeev, V. V.

    Published in Inorganic materials (01-08-2007)
    “…The formation of binary graphite intercalation compounds (GICs) with nitric and sulfuric acids in the presence of a strong oxidant has been studied by x-ray…”
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    Low-density carbon material modified with pyrolytic carbon by Sorokina, N.E., Savchenko, D.V., Ionov, S.G., Tikhomirov, A.S., Nikol'skaya, I.V., Avdeev, V.V.

    “…Here we report a physicochemical investigation of low-density carbon materials modified with pyrolytic carbon (PC). Exfoliated graphite (EG) obtained by…”
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    Pyrolytic densification of porous carbon-carbon composite materials by Tolbin, A. Yu, Spitsyn, B. V., Serdan, A. A., Averin, A. A., Malakho, A. P., Kepman, A. V., Sorokina, N. E., Avdeev, V. V.

    Published in Inorganic materials (2013)
    “…This paper examines the densification of the pore space of a carbon-carbon composite material through methane pyrolysis at a reduced pressure and the dynamics…”
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    Preparation of carbon materials doped with metal compounds by Karzov, I. M., Sorokina, N. E., Avdeev, V. V.

    Published in Inorganic materials (01-04-2009)
    “…Doped exfoliated graphite has been prepared via anodic oxidation of natural dispersed graphite in solutions of magnesium, lanthanum, and silver nitrates,…”
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    Preparation and properties of exfoliated graphite doped with nickel and cobalt oxides by Shornikova, O. N., Sorokina, N. E., Avdeev, V. V.

    Published in Inorganic materials (01-09-2007)
    “…We report the first synthesis of doped exfoliated graphite through the electrochemical oxidation of natural graphite in aqueous nickel nitrate and cobalt…”
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    Influence of conditions of catalytic growth of carbon nanostructures on mechanical properties of modified carbon fibres by Tolbin, A. Yu, Nashchokin, A. V., Kepman, A. V., Dunaev, A. V., Malakho, A. P., Morozov, V. A., Seleznev, A. N., Sorokina, N. E., Avdeev, V. V.

    Published in Fibre chemistry (01-07-2012)
    “…An investigation has been made of the process of catalytic growth of carbon nanostructures on the surface of carbon fibres (CF) by chemical vapor deposition…”
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    Preparation of bicomponent fibers by surface modification with fibrous carbon nanostructure filler by Tolbin, A. Yu, Nashchokin, A. V., Kepman, A. V., Malakho, A. P., Sorokina, N. E., Morozov, V. A., Kulakov, V. V., Seleznev, A. N., Avdeev, V. V.

    Published in Fibre chemistry (01-11-2012)
    “…Surface treatment of carbon PAN fibers was performed by growing carbon nanostructures using chemical vapor deposition and a mixture of benzene and cyclohexane…”
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    Electrochemical study of the graphite—HNO3 system by Avdeev, V. V., Tverezovskaya, O. A., Sorokina, N. E., Nikol’skaya, I. V., Finaenov, A. I.

    Published in Inorganic materials (01-03-2000)
    “…The anodic oxidation of highly oriented pyrolytic graphite in 50 to 98% HNO3 was studied in a galvanostatic mode at a current of 1.5 mA. At HNO3 concentrations…”
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    Thermal properties of graphite intercalation compounds with acids by Maksimova, N.V., Sorokina, N.E., Shornikova, O.N., Avdeev, V.V.

    “…This work is devoted to systematic thermal analysis of first to fifth stages of binary graphite intercalation compounds (GIC) with HNO 3 and ternary GICs with…”
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