Search Results - "Kharitonov, A.P."

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  1. 1

    Direct fluorination of polymers—From fundamental research to industrial applications by Kharitonov, A.P.

    Published in Progress in organic coatings (01-02-2008)
    “…In this paper fundamental features and industrial applications of the direct fluorination of polymers are reviewed. Direct fluorination of polymers (i.e…”
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  2. 2

    Reinforcement of epoxy resin composites with fluorinated carbon nanotubes by Kharitonov, A.P., Simbirtseva, G.V., Tkachev, A.G., Blohin, A.N., Dyachkova, T.P., Maksimkin, A.A., Chukov, D.I.

    Published in Composites science and technology (11-02-2015)
    “…Epoxy resin (diglycidyl ether bisphenol-A type) polymer composites with added unmodified and fluorinated carbon nanotubes (CNTs) were studied by FTIR, TGA, DSC…”
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  3. 3

    Modification of surface properties of carbon-based and polymeric materials through fluorination routes: From fundamental research to industrial applications by Tressaud, A., Durand, E., Labrugère, C., Kharitonov, A.P., Kharitonova, L.N.

    Published in Journal of fluorine chemistry (01-04-2007)
    “…Treatments involving F 2, fluorinated gases and rf plasma-enhanced fluorination (PEF) constitute exceptional tools for modifying the surface properties of…”
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  4. 4

    New synthesis methods for fluorinated carbon nanofibres and applications by Zhang, W., Spinelle, L., Dubois, M., Guérin, K., Kharbache, H., Masin, F., Kharitonov, A.P., Hamwi, A., Brunet, J., Varenne, C., Pauly, A., Thomas, P., Himmel, D., Mansot, J.L.

    Published in Journal of fluorine chemistry (01-06-2010)
    “…Different fluorination mechanisms using fluorinating agent or molecular fluorine. Several new synthesis methods of fluorinated carbon nanofibres, such as…”
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  5. 5

    Practical applications of the direct fluorination of polymers by Kharitonov, A.P

    Published in Journal of fluorine chemistry (01-04-2000)
    “…Applications are reviewed of direct fluorination to enhance the following commercial properties of polymeric goods: separation factor of polymeric membranes…”
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  6. 6

    Reinforcement of Bisphenol-F epoxy resin composites with fluorinated carbon nanotubes by Kharitonov, A.P., Tkachev, A.G., Blohin, A.N., Dyachkova, T.P., Kobzev, D.E., Maksimkin, A.V., Mostovoy, A.S., Alekseiko, L.N.

    Published in Composites science and technology (06-10-2016)
    “…Pristine and fluorinated carbon nanotubes (CNT) were studied by FTIR, TGA, Raman spectroscopy, transmission and scanning electron microscopy. Influence of…”
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  7. 7

    Bulk oriented nanocomposites of ultrahigh molecular weight polyethylene reinforced with fluorinated multiwalled carbon nanotubes with nanofibrillar structure by Maksimkin, A.V., Kharitonov, A.P., Mostovaya, K.S., Kaloshkin, S.D., Gorshenkov, M.V., Senatov, F.S., Chukov, D.I., Tcherdyntsev, V.V.

    Published in Composites. Part B, Engineering (01-06-2016)
    “…Multi-stage process including grinding of fluorinated multi-walled carbon nanotubes (MWCNT) and ultrahigh molecular weight polyethylene (UHMWPE) mixture in a…”
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  8. 8

    Polymer composites based on epoxy resin with added carbon nanotubes by Blokhin, A. N., Dyachkova, T. P., Maksimkin, A. V., Stolyarov, R. A., Suhorukov, A. K., Burmistrov, I. N., Kharitonov, A. P.

    “…Epoxy resin (diglycidyl ether bisphenol-A type) polymer composites with added pristine and fluorinated carbon nanotubes (CNTs) were studied by FTIR, TGA and…”
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  9. 9

    Structure and mechanical properties of self-reinforced ultra-high molecular weight polyethylene by Chukov, DI, Kharitonov, AP, Tcherdyntsev, VV, Zherebtsov, DD, Maksimkin, AV

    Published in Journal of composite materials (01-05-2018)
    “…Ultra-high molecular weight polyethylene-based self-reinforced composite materials were studied. Surface of the ultra-high molecular weight polyethylene fibers…”
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  10. 10

    Fabrication of oriented UHMWPE films using low solvent concentration by Maksimkin, A.V., Kharitonov, A.P., Nematulloev, S.G., Kaloshkin, S.D., Gorshenkov, M.V., Chukov, D.I., Shchetinin, I.V.

    Published in Materials & design (05-02-2017)
    “…The method of oriented films fabrication from the ultrahigh molecular weight polyethylene (UHMWPE) and small amount of solvent (1.6ml of solvent per 1g of…”
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  11. 11

    Comparison of the surface modifications of polymers induced by direct fluorination and rf-plasma using fluorinated gases by Kharitonov, A.P., Simbirtseva, G.V., Tressaud, A., Durand, E., Labrugère, C., Dubois, M.

    Published in Journal of fluorine chemistry (01-09-2014)
    “…AFM of high density polyethylene. Virgin direct fluorination, 20°C C4F8 plasma, 25°C CF4 plasma, 90°C. •UHMWPE and HDPE surfaces were modified using two…”
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  12. 12

    Plasma and fluorination combination for stable multifunctionality of LDPE packaging films by Peyroux, Jérémy, Dubois, Marc, Tomasella, Eric, Batisse, Nicolas, Frezet, Lawrence, Petit, Elodie, Kharitonov, Alexander P., Flahaut, Delphine

    Published in Plasma processes and polymers (01-08-2017)
    “…Low Density Polyethylene (LDPE) films are treated by a combination of plasma treatment followed by direct fluorination. Plasma treatment is carried out either…”
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  13. 13

    Properties of syndiotactic polystyrene composites with surface modified short Kevlar fiber by Mukherjee, M., Das, C.K., Kharitonov, A.P., Banik, K., Mennig, G., Chung, T.N.

    “…This paper is concerned with the effects of the surface modified Kevlar fiber on the crystalline, thermal, dynamic mechanical properties of the Kevlar fiber…”
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  14. 14

    Direct fluorination—Useful tool to enhance commercial properties of polymer articles by Kharitonov, A.P., Taege, R., Ferrier, G., Teplyakov, V.V., Syrtsova, D.A., Koops, G.-H.

    Published in Journal of fluorine chemistry (01-02-2005)
    “…Fundamental features and industrial applications of the direct fluorination of polymers are reviewed. Fundamental features of the direct fluorination of a set…”
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  15. 15

    Mass-spectrometric investigation of gases evolved by fluorinated single-wall carbon nanotubes during heating by Shulga, Y.M., Martynenko, V.M., Krestinin, A.V., Kharitonov, A.P., Davidova, G.I., Knerelman, E.I., Krastev, V.I., Schur, D.V.

    “…Mass-spectrometric investigation of gases produced by heating in vacuum fluorinated single-wall nanotubes (with fluorine content of 25 mass %) which have been…”
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  16. 16

    Fluorinated aramid fiber reinforced polypropylene composites and their characterization by Maity, J., Jacob, C., Das, C.K., Kharitonov, A.P., Singh, R.P., Alam, S.

    Published in Polymer composites (01-08-2007)
    “…Polymer fibers are one of the main substances used for the reinforcement of plastic composites. Surface modification of aramid fiber was performed by direct…”
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  17. 17

    Fluorinated and oxyfluorinated short Kevlar fiber-reinforced ethylene propylene polymer by Mukherjee, M., Das, C.K., Kharitonov, A.P.

    Published in Polymer composites (01-04-2006)
    “…The thermomechanical behavior of fluorinated and oxyfluorinated Kevlar fiber‐reinforced ethylene propylene (EP) composites has been studied. The composites…”
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  18. 18

    Comparative X-ray absorption investigation of fluorinated single-walled carbon nanotubes by Brzhezinskaya, M. M., Vinogradov, A. S., Krestinin, A. V., Zvereva, G. I., Kharitonov, A. P., Kulakova, I. I.

    Published in Physics of the solid state (01-04-2010)
    “…The C 1 s and F 1 s X-ray absorption spectra of pristine and fluorinated single-walled carbon nanotubes with different fluorine contents and nanodiamond as a…”
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  19. 19

    Improving gas separation properties of polymeric membranes based on glassy polymers by gas phase fluorination by Syrtsova, D.A, Kharitonov, A.P, Teplyakov, V.V, Koops, G.-H

    Published in Desalination (10-03-2004)
    “…The application area of existing gas separation membranes is limited by commercially available polymers for their preparation. In many cases the separation…”
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  20. 20

    Effect of Compatibilizer on the Properties of Fluorinated and Oxy-fluorinated Short Kevlar fiber Reinforced EP by Mukherjee, M., Das, C.K., Kharitonov, A.P.

    “…This paper concentrates on the effect of compatibilizers on the thermal, dynamic mechanical, crystalline and rheological properties of unmodified fluorinated…”
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