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Hydrogen sorption of mg nb2o5 cnt produced by ball milling and subsequent high pressure torsion

Jul 01, 2020 Jul 01, 2020 The Influence of Preparation Conditions on the Hydrogen Sorption of Mg-Nb₂O5-CNT Produced by Ball Milling and Subsequent High-Pressure Torsion. R v sz (1), Spassov T(2), Kis VK(3), Schafler E(4), Gajdics M(1). Author information: (1)Department Materials Physics, E tv s University, Budapest, H-1518, Budapest, Hungary

  • Low-temperature hydrogenation of Mg-Ni-Nb2O5 alloy
    Low-temperature hydrogenation of Mg-Ni-Nb2O5 alloy

    The influence of preparation conditions on the hydrogen sorption of Mg-Nb 2 O 5-CNT produced by ball milling and subsequent high-pressure torsion J. Nanosci. Nanotechnol. , 20 ( 2020 ) , pp. 4587 - 4590

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  • Microstructural and morphological investigations on Mg
    Microstructural and morphological investigations on Mg

    Mar 13, 2020 A combined deformation process of high energy ball milling and subsequent high-pressure torsion method was applied to synthesize nanocrystalline magnesium powders catalyzed by Nb 2 O 5 and/or multiwall carbon nanotubes. The effect of the different additives on the kinetics of the milled powders and the bulk disks produced by simultaneous uniaxial compression and severe shear

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  • Microstructure and hydrogen sorption kinetics of Mg
    Microstructure and hydrogen sorption kinetics of Mg

    A combined deformation process of high energy ball milling and subsequent high-pressure torsion method was applied to synthesize nanocrystalline magnesium powders catalyzed by Nb2O5 and/or

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  • List of peer-reviewed publications
    List of peer-reviewed publications

    conditions on the hydrogen sorption of Mg-Nb2O5-CNT produced by ball milling and subsequent high-pressure torsion, Proceedings of The 25th International Symposium on Metastable, Amorphous and Nanostructured Materials (ISMANAM 2018), 2-6.07.2018, Rome, Italy

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  • Catalytically Enhanced Hydrogen Sorption in Mg-MgH2 by
    Catalytically Enhanced Hydrogen Sorption in Mg-MgH2 by

    A combined deformation process of high energy ball milling and subsequent high-pressure torsion method was applied to synthesize nanocrystalline magnesium powders catalyzed by Nb2O5 and/or

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  • Improved H-Storage Performance of Novel Mg-Based
    Improved H-Storage Performance of Novel Mg-Based

    In this review, we present the very recent progress, from 2016 to 2021, on catalyzing the hydrogen sorption of Mg-based materials by ball milling. The various catalyzing routes enhancing the hydrogenation performance, including in situ formation of catalysts and synergistic improvement achieved by using multiple additives, will also be summarized

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  • (PDF) Magnesium-based hydrogen storage nanomaterials
    (PDF) Magnesium-based hydrogen storage nanomaterials

    The improvement of hydrogenation/ dehydrogenation of Mg by the oxides was also observed for Mg High Energy Reactive Ball Milling in Hydrogen (HRBM) is a very or MgH2 ball milled with the additives in an inert (argon) atmo- efficient route for the preparation of hydrogen

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