Effect of Co substitution for Ni and magnetic-heat treatment on the structures and electrochemical properties of La–Mg–Ni-type hydrogen storage alloys
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference17 articles.
1. R&D on metal hydride materials and Ni–MH batteries in Japan
2. Synthesis and structure determination of a new series of hydrogen storage alloys; RMg2Ni9 (R=La, Ce, Pr, Nd, Sm and Gd) built from MgNi2 Laves-type layers alternating with AB5 layers
3. The effect of substitution of Zr for La on the electrochemical properties of La0.7−xZrxMg0.3Ni2.45Mn0.1Co0.75Al0.2 hydrogen storage electrode alloys
4. Hydriding properties of LaNi3 and CaNi3 and their substitutes with PuNi3-type structure
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1. Investigation of Hydrogen Storage Properties on the Mg-La-Ni Alloy compounded with C@Pr2O3 composite catalyst;Journal of Alloys and Compounds;2024-09
2. Recent progress in thermodynamic and kinetics modification of magnesium hydride hydrogen storage materials;Materials Reports: Energy;2024-02
3. Superior hydrogen storage kinetics of MgH2 by in-situ generated α-Fe from the Fe-zeolitic imidazolate framework;Scripta Materialia;2024-01
4. Optimizing hydrogen ad/desorption of Mg-based hydrides for energy-storage applications;Journal of Materials Science & Technology;2023-04
5. Regulation of Hydrogen Storage Phase and Its Interface in Magnesium-Based Materials for Hydrogen Storage Performance;ACTA METALL SIN;2023
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