Structural and hydriding properties of the intermetallic Y1−xNi2 synthesized by mechanical alloying or submitted to mechanical grinding
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference11 articles.
1. Intermetallic compounds of rare-earth and 3d transition metals
2. Structure determination of Y0.95Ni2 by X-ray powder diffraction
3. Temperature- and pressure-induced structural transitions in rare-earth-deficient (R = Y, Sm, Gd, Tb) Laves phases
4. Structure of Y0.95Ni2 and its hydride
5. Local structure evolution in hydrogen-induced amorphization of YFe2 and YNi2 Laves phases
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2. A comparative study for synthesis methods of nano-structured (9Ni–2Mg–Y) alloy catalysts and effect of the produced alloy on hydrogen desorption properties of MgH2;International Journal of Hydrogen Energy;2013-12
3. Determination of kinetic parameters and hydrogen desorption characteristics of MgH2-10 wt% (9Ni–2Mg–Y) nano-composite;International Journal of Hydrogen Energy;2013-09
4. Synthesizing Nanostructured Ni75Mg16.66Y8.34(at%) Powder by Solid State Reaction and Mechanical Milling;Materials and Manufacturing Processes;2012-12
5. Improvement in high-rate dischargeability, activation, and low-temperature performance in multi-phase AB2 alloys by partial substitution of Zr with Y;Journal of Power Sources;2012-10
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