Publication | Closed Access
LiNH<sub>2</sub>BH<sub>3</sub>·NH<sub>3</sub>BH<sub>3</sub>: Structure and Hydrogen Storage Properties
80
Citations
19
References
2009
Year
Energy Storage MaterialsMaterials ScienceChemical EngineeringNh3bh3 LayersEngineeringHydrogen Energy TechnologyHydrogen Storage PropertiesHydrogen UtilizationPhysical ChemistryChemistryHydrogenEquiv Linh2bh3Alternative Linh2bh3
LiNH2BH3·NH3BH3, synthesized by reacting LiH and 2 equiv of NH3BH3 or by reacting equiv LiNH2BH3 and NH3BH3, is composed of alternative LiNH2BH3 and NH3BH3 layers. The compound starts to release hydrogen at 57 °C and can desorb ca. 14.0 wt % hydrogen in a stepwise manner with peak temperatures at 80 and 140 °C, respectively.
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