Dehydrogenation of Surface-Oxidized Mixtures of 2LiBH4 + Al/Additives (TiF3 or CeO2)
Author:
Publisher
MDPI AG
Subject
Inorganic Chemistry
Link
http://www.mdpi.com/2304-6740/5/4/82/pdf
Reference47 articles.
1. LiBH4 a new hydrogen storage material
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3. Study of the decomposition of a 0.62LiBH 4 –0.38NaBH 4 mixture
4. LiBH4−Mg(BH4)2: A Physical Mixture of Metal Borohydrides as Hydrogen Storage Material
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1. Facile achieved dehydrogenation of Lithium borohydride at 64 °C through a novel plate-like Li-Al-Cl compound;Journal of Energy Storage;2024-04
2. Hydrogen storage properties of surface oxidized LiBH4 system catalyzed with NiO nanorods and nanoplates;International Journal of Hydrogen Energy;2024-01
3. Effect of a mesoporous NiCo2O4 urchin-like structure catalyzed with a surface oxidized LiBH4 system for reversible hydrogen storage applications;RSC Advances;2024
4. Dehydrogenation Performances of Different Al Source Composite Systems of 2LiBH4 + M (M = Al, LiAlH4, Li3AlH6);Frontiers in Chemistry;2020-04-15
5. The Dehydrogenation Mechanism and Reversibility of LiBH4 Doped by Active Al Derived from AlH3;Metals;2019-05-13
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