Effects of rare earth elements substitution for Ti on the structure and electrochemical properties of a Fe-doped Ti–V-based hydrogen storage alloy
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference20 articles.
1. The relation between microstructure and hydrogen absorbing property in Laves phase-solid solution multiphase alloys
2. Hydrogen absorption by Laves phase related BCC solid solution
3. Hydrogen absorbing-desorbing properties and crystal structure of the ZrTiNiMnV AB2 Laves phase alloys
4. Effect of vanadium substitution in C14 Laves phase alloys for NiMH battery application
5. Investigation of microstructure and electrochemical properties of Ti0.8Zr0.2V2.7Mn0.5+xCr0.8Ni1.5−x hydrogen storage alloys
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1. Influence of Zr Addition on the Microstructure and Hydrogenation Kinetics of Ti50−xV25Cr25Zrx (x = 0, 5, 7, and 9) Alloys;Materials;2024-03-16
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3. Improvement on cyclic stability of AB4-type La–Mg–Ni-based hydrogen storage alloys via merging Y element for nickel-metal hydride batteries;International Journal of Hydrogen Energy;2023-10
4. Research and application of Ti–Mn-based hydrogen storage alloys;Journal of Iron and Steel Research International;2023-02-28
5. Using tetramethylammonium hydroxide electrolyte to inhibit corrosion of Mg-based amorphous alloy anodes: A route for promotion energy density of Ni-MH battery;Journal of Alloys and Compounds;2022-06
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