Hydrogen cycling induced degradation in LaNi5-type materials
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference13 articles.
1. Investigation of hydriding properties of LaNi4.8Sn0.2, LaNi4.27Sn0.24 and La0.9Gd0.1Ni5 after thermal cycling and aging
2. Modelling Dislocation-Induced Anisotropic Line Broadening in Rietveld Refinements Using a Voigt Function. II. Application to Neutron Powder Diffraction Data
3. Anisotropic diffraction peak broadening and dislocation substructure in hydrogen-cycled LaNi5and substitutional derivatives
4. On the nature of the electrochemical cycling stability of non-stoichiometric LaNi5-based hydride-forming compounds Part II. In situ x-ray diffractometry
5. Investigation of the crystallographic structures of LaNi4CoD4.4 and LaNi3.55Mn0.4Al0.3Co0.75D (x=2.0 and 4.6 D/f.u.) by neutron powder diffraction
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