Improvement in the low-temperature performance of AB5 metal hydride alloys by Fe-addition
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference68 articles.
1. The influence of Co and various additives on the performance of MmNi4.3−xMn0.33Al0.4Cox hydrogen storage alloys and Ni/MH prismatic sealed cells
2. Development of AB5 type hydrogen storage alloys with low Co content for rechargeable Ni–MH batteries with respect to electric vehicle applications
3. Studies on cobalt-free AB5-type hydrogen storage alloys
4. Electrochemical and crystallographic characterization of Co-free hydrogen storage alloys for use in nickel–metal hydride batteries
5. Electrochemical study of cobalt-free AB5-type hydrogen storage alloys
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2. Hydrogen storage alloy development for wide operating temperature nickel-metal hydride battery applications;International Journal of Hydrogen Energy;2024-01
3. Enhanced cycling stability and reduced hysteresis of AB5-type hydrogen storage alloys by partial substitution of Sn for Ni;International Journal of Hydrogen Energy;2022-06
4. Facile synthesis and characterizations of Co2+ doped Bi0.8Ba0.2FeO3 nano-crystalline multiferroic ceramics;Physica Scripta;2021-07-13
5. Structure and hydrogen storage properties of AB3-type Re2Mg(Ni0.7 − xCo0.2Mn0.1Alx)9 (x = 0‒0.04) alloys;Materials for Renewable and Sustainable Energy;2018-12-15
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