XRD study on the electrochemical hydriding/dehydriding behavior of the La–Mg–Ni–Co-type hydrogen storage alloys
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference18 articles.
1. From permanent magnets to rechargeable hydride electrodes
2. Metal Hydride Anodes for Nickel‐Hydrogen Secondary Battery
3. Effect of Co content on the kinetic properties of the MlNi4.3−XCoXAl0.7 hydride electrodes
4. 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
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2. The electrochemical characteristics of AB4-type rare earth–Mg–Ni-based superlattice structure hydrogen storage alloys for nickel metal hydride battery;Journal of Magnesium and Alloys;2021-11
3. Effect of Y substitution on the high rate dischargeability of AB4.6 alloys as an electrode material for nickel metal hydride batteries;Journal of Alloys and Compounds;2020-12
4. Enhanced electrochemical and hydrogen storage properties of La–Mg–Ni-based alloy electrode using a Ni and N co-doped reduced graphene oxide nanocomposite as a catalyst;International Journal of Hydrogen Energy;2019-10
5. A new choice for the anode of nickel metal hydride batteries with long cycling life: A Ce2Ni7-type single-phase Nd0.80Mg0.20Ni3.58 hydrogen storage alloy;Journal of Power Sources;2019-09
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