Hydrogen storage properties of LaNi3.8Al1.0M0.2 (M=Ni, Cu, Fe, Al, Cr, Mn) alloys
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference28 articles.
1. Correlations between the structural properties, the stability and the hydrogen content of substituted LaNi5 compounds
2. Effect of hydrogen absorption/desorption cycling on hydrogen storage performance of LaNi4.25Al0.75
3. Modifications near the surface owing to hydrogen cycling of the intermetallics LaNi5 and LaNi5−xAlx
4. A method for designing a hydrogen absorbing LaNi5−x−yMnxAly alloy for a chemical refrigeration system
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1. Influence of Fe substitution on structural stability and hydrogen storage/compression performance: A theoretical and experimental study on TiCr1.5-Mn0.5Fe alloys;Chemical Engineering Journal;2024-08
2. Effect of Al and Mn substitutions on hydrogen activation performances of La–Ni–Al–Mn alloy;Heliyon;2024-04
3. Novel temperature-driven technique to characterize hydrogen sorption properties under vacuum conditions: Method development, experimental setup, and demonstration on the AB5-type metal hydride LaNi4.1Al0.52Mn0.38;International Journal of Hydrogen Energy;2023-12
4. Elevated temperature adsorbents for separation applications;EnergyChem;2023-11
5. Influence of Fe on the Hydrogen Storage Properties of LaCeNi Alloys;Langmuir;2023-04-20
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