Comparison of dehydriding kinetics between pure LaNi5 and its substituted systems
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference20 articles.
1. Mechanism of the α-to-β phase transformation in the LaNi5–H2 system
2. Performance of containers with hydrogen storage alloys for hydrogen compression in heat treatment facilities
3. Characteristics of LaNi5-based hydrogen storage alloys modified by partial substituting La for Ce
4. Comparative analysis of the hydriding kinetics of LaNi5, La0.8Nd0.2Ni5 and La0.7Ce0.3Ni5 compounds
5. Study on hydrogen storage properties of LaNi3.8Al1.2−xMnx alloys
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1. Characteristics of constant pressure dehydrogenation and construction of linear diffusion model for solid hydrogen storage materials: A case study of TiMn1.5 alloy;Fuel;2024-11
2. Electrochemical properties of the CaNi4.8M0.2(MMg, Zn, and Mn) mechanical milling alloys used as anode materials in nickel‐metal hydride batteries;Environmental Progress & Sustainable Energy;2023-03-30
3. Synthesis and Characterization of Metal Hydrides and Their Application;Handbook on Synthesis Strategies for Advanced Materials;2021
4. First-principles study of structures, electronic and elastic properties of LaNi5−Fe (x: 0.25–1.25);Journal of Molecular Graphics and Modelling;2019-07
5. Interpretation of negative temperature dependence of hydriding reaction in LaNi5-Mg alloys by modified Chou model;Catalysis Today;2018-11
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