Hydrogen storage in Mg–10at.% LaNi5 nanocomposites, synthesized by ball milling at different conditions
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference31 articles.
1. Hydrogen storage properties of the mechanically milled MgH2–V nanocomposite
2. Kinetics of the hydriding-dehydriding reactions of the hydrogen-metal hydride systems
3. Structural study and hydrogen sorption kinetics of ball-milled magnesium hydride
4. Mechanically milled Mg composites for hydrogen storage: the relationship between morphology and kinetics
5. Metal oxides as catalysts for improved hydrogen sorption in nanocrystalline Mg-based materials
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1. Catalysis in Solid Hydrogen Storage: Recent Advances, Challenges, and Perspectives;Energy Technology;2022-07-28
2. Thermodynamic characterization of Mg‐50 wt% LaNi 5 composite hydride for thermochemical energy storage application;Energy Storage;2021-08-03
3. Superior catalytic effect of facile synthesized LaNi4.5Mn0.5 submicro-particles on the hydrogen storage properties of MgH2;Journal of Alloys and Compounds;2020-12
4. Influence of effective thermal conductivity on hydrogen sorption in Mg-LaNi4.6Al0.4 composite hydride beds for thermal energy storage;Thermal Science and Engineering Progress;2020-10
5. Mg–Ni–La based small hydrogen storage tank: kinetics, reversibility and reaction mechanisms;RSC Advances;2020
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