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Journal of alloys and compounds, ISSN 0925-8388, 08/2015, Volume 641, pp. 176 - 180
•The Mg–(5, 10, 15, 20at.%)Ni–3La alloys keep high hydrogen storage capacity of 4.51–5.50wt%.•The dehydriding rate first increases, and then decreases with an increase of Ni content... 
Mg-based alloys | Ni content | Microstructure | Hydrogen storage properties | MG3RE HYDRIDES | MATERIALS SCIENCE, MULTIDISCIPLINARY | METALLURGY & METALLURGICAL ENGINEERING | CHEMISTRY, PHYSICAL | H-2 | NANOPARTICLES | RATES | MAGNESIUM HYDRIDE | THERMODYNAMICS | KINETICS | Hydrogen | Analysis | Alloys | Activation energy | Hydrogen storage | Magnesium base alloys | Phases | Intermetallic compounds | Desorption | Nickel | Magnesium
Journal Article
International journal of hydrogen energy, ISSN 0360-3199, 2018, Volume 43, Issue 18, pp. 8877 - 8887
Ternary alloys with the nominal composition of Mg24Y3M (M = Ni, Co, Cu, Al) have been fabricated by using vacuum induction melting method... 
Multiphase structure | Thermodynamics | Hydrogen storage | Mg-based alloy | Kinetics | ELECTROCHEMISTRY | STACKING ORDERED STRUCTURE | ENERGY & FUELS | LAVES PHASES | INDUCED AMORPHIZATION | CHEMISTRY, PHYSICAL | METAL-HYDRIDES | HYDRIDING PROPERTIES | COMPOSITE | TRANSITION | STORAGE PROPERTIES | DESORPTION-KINETICS | MELT-SPUN
Journal Article
Journal of alloys and compounds, ISSN 0925-8388, 04/2017, Volume 702, pp. 126 - 131
Nanocrystalline and amorphous microstructures prepared by rapid solidification (RS) processing are effective in improving the absorption/desorption kinetics of the Mg-based hydrogen storage alloys... 
Mg-based alloys | Microstructure | Hydrogen storage properties | Rapid solidification | DISCHARGE CAPACITIES | MAGNESIUM HYDRIDE | EVOLUTION | MATERIALS SCIENCE, MULTIDISCIPLINARY | METALLURGY & METALLURGICAL ENGINEERING | CHEMISTRY, PHYSICAL | Grain boundaries | Metallic glasses | Hydrogen | Analysis | Degassing of metals | Metals
Journal Article
Acta materialia, ISSN 1359-6454, 02/2017, Volume 124, pp. 268 - 279
Journal Article
International journal of hydrogen energy, ISSN 0360-3199, 2010, Volume 35, Issue 5, pp. 2091 - 2103
.... The binary alloys are used to establish as baseline case for the ternary Mg–Al–Ti, Mg–Fe–Ti and Mg–Al–Fe compositions. We show that the ternary alloys in particular display remarkable sorption behavior... 
Intermetallics | Mg-based alloys | Hydrogen storage | Kinetics | ELECTROCHEMISTRY | MAGNESIUM | FILMS | ENERGY & FUELS | SORPTION | CHEMISTRY, PHYSICAL | TRANSITION-METALS | Analysis | Nanotechnology | Alloys | Sorption | Cycles | Magnesium base alloys | Aluminum | Thick films | Magnesium
Journal Article
International journal of hydrogen energy, ISSN 0360-3199, 2009, Volume 34, Issue 11, pp. 4788 - 4796
Journal Article
International journal of hydrogen energy, ISSN 0360-3199, 03/2019, Volume 44, Issue 14, pp. 7371 - 7380
Mg80–xNi20Yx (x = 0–7) alloys were successfully prepared by using the vacuum induction melting method... 
Thermodynamics | Hydrogen storage | Mg-based alloy | Kinetics | Microstructure | ELECTROCHEMISTRY | MECHANISM | ENERGY & FUELS | PERFORMANCE | NANOCRYSTALLINE | CHEMISTRY, PHYSICAL | STATE | HYDROGENATION/DEHYDROGENATION | COMPOSITE | SITU | DEHYDROGENATION | ABSORPTION
Journal Article
International journal of hydrogen energy, ISSN 0360-3199, 06/2012, Volume 37, Issue 12, pp. 9716 - 9721
Amorphous-crystalline composite ribbons of quaternary Mg–Ni–(Y,La)–Pd alloys are produced via rapidly solidification and used as precursors for creating nanocrystalline hydrogen storage materials... 
Hydrogen storage | Metal hydride | Mg-based alloy | Nanocrystalline material | Metallic glass | ELECTROCHEMISTRY | MAGNESIUM | ENERGY & FUELS | CHEMISTRY, PHYSICAL | HYDRIDE | Thermodynamics | Palladium | Hydrogen | Alloys
Journal Article
Materials, ISSN 1996-1944, 2013, Volume 6, Issue 10, pp. 4654 - 4674
.../dehydrogenation kinetics, thermodynamic tuning is still a great challenge for Mg-based alloys. At present, the main strategies to alter the thermodynamics of Mg/MgH2 are alloying, nanostructuring, and changing the reaction pathway... 
Changing reaction pathway | Thermodynamics | Nanostructuring | Alloying | Mg-based hydrogen storage alloys | THIN-FILMS | alloying | METAL HYDRIDE | changing reaction pathway | MATERIALS SCIENCE, MULTIDISCIPLINARY | thermodynamics | PUNI3-TYPE STRUCTURE | nanostructuring | MAGNESIUM HYDRIDE | MULTILAYER FILM | KINETICS | DESTABILIZATION | THERMAL EVAPORATION | SORPTION PROPERTIES | DESORPTION PROPERTIES
Journal Article
Materials science & engineering. A, Structural materials : properties, microstructure and processing, ISSN 0921-5093, 11/2013, Volume 585, pp. 139 - 148
Journal Article
Acta materialia, ISSN 1359-6454, 05/2017, Volume 130, pp. 137 - 146
There have been extensive experimental observations of the anisotropic corrosion behavior of metals and alloys, and their mechanisms were assumed to be correlated with the so-called surface energy or the work function... 
First-principles calculations | Mg-based alloys | Corrosion | Modeling | AZ31 MG ALLOY | MAGNESIUM ALLOYS | WORK FUNCTION | MATERIALS SCIENCE, MULTIDISCIPLINARY | METALLURGY & METALLURGICAL ENGINEERING | CRYSTALLOGRAPHIC ORIENTATION | ELECTROCHEMICAL ACTIVITY | PROBE FORCE MICROSCOPY | THIN ELECTROLYTE LAYERS | MECHANICAL-PROPERTIES | SINGLE-CRYSTALS | GALVANIC CORROSION | Anisotropy | Specific gravity | Analysis | Alloys | Density functionals | Models | Surface energy | Corrosion and anti-corrosives
Journal Article