Effect of Ti on the structure and electrochemical performance of Zr-based AB2 alloys for nickel–metal rechargeable batteries
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference12 articles.
1. Surface and bulk properties of the TiyZr1−y(VxNi1−x)2 alloy system as active electrode material in alkaline electrolyte
2. The electrochemical properties of hydrogen storage Zr-based Laves phase alloys
3. Correlation between crystal structure and electrochemical properties of C14 Laves-phase alloys
4. Effects of Oxidation Treatment of Ti — Zr — Ni Hydride Electrodes Containing Zr7Ni10 Phase on Their Electrochemical Properties*
5. Crystal structure, phase abundance and electrode performance of Laves phase compounds (Zr, A)V0.5Ni1.1Mn0.2Fe0.2 (A ≡ Ti, Nb or Hf)
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1. Effects of Ti substitution for Zr on the electrochemical characteristics and structure of AB2-type Laves-phase alloys as metal hydride anodes;Journal of Alloys and Compounds;2021-12
2. Hydrides of Laves type Ti–Zr alloys with enhanced H storage capacity as advanced metal hydride battery anodes;Journal of Alloys and Compounds;2020-07
3. Studies of Zr-based C15 type metal hydride battery anode alloys prepared by rapid solidification;Journal of Alloys and Compounds;2019-10
4. Electrochemical studies and phase-structural characterization of a high-capacity La-doped AB2 Laves type alloy and its hydride;Journal of Power Sources;2019-04
5. Structural Characterization and Electrochemical Performance of Zr1−xTixCr0.7Mo0.3Ni Alloys;JOM;2019-03-18
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