Hydriding properties of the Zr(Cr0.5Ni0.5)α (1.75≤α≤3.5) alloy system
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference8 articles.
1. Effects of Oxidation Treatment of Ti — Zr — Ni Hydride Electrodes Containing Zr7Ni10 Phase on Their Electrochemical Properties*
2. Effects of partial substitution and anodic oxidation treatment of Zr−V−Ni alloys on electrochemical properties
3. Effects of pretreatment on the activation behavior of Zr(V0.25Ni0.75)2 metal hydride electrodes in alkaline solution
4. Metallurgical state of lanthanum and its effects on the activation behaviour of Zr(Cr0.4Ni0.6)2 hydride formation
5. Improvement of the electrochemical activity of ZrNiCr Laves phase hydride electrodes by secondary phase precipitation
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1. Studies of off-stoichiometric AB2 metal hydride alloy: Part 2. Hydrogen storage and electrochemical properties;International Journal of Hydrogen Energy;2011-08
2. Studies of off-stoichiometric AB2 metal hydride alloy: Part 1. Structural characteristics;International Journal of Hydrogen Energy;2011-08
3. Electrochemical activation and electrocatalytic enhancement of a hydride-forming metal alloy modified with palladium, platinum and nickel;Electrochimica Acta;2006-05
4. Hydrogen absorption behavior of multicomponent zirconium based AB2 alloys with different chromium–vanadium ratio;Journal of Alloys and Compounds;2003-05
5. Hydrogen absorption studies of an over-stoichiometric zirconium-based AB2 alloy;Journal of Power Sources;2003-01
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