Catalytic generation of molecular hydrogen from hydrazine using lithium and beryllium hydrides
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Reference32 articles.
1. Chemical and Physical Solutions for Hydrogen Storage
2. Molecular Mechanism for H2 Release from BH3NH3, Including the Catalytic Role of the Lewis Acid BH3
3. The effect of the NH2 substituent on NH3: hydrazine as an alternative for ammonia in hydrogen release in the presence of boranes and alanes
4. Characterization of Iridium Catalyst for Decomposition of Hydrazine Hydrate for Hydrogen Generation
5. Room-Temperature Hydrogen Generation from Hydrous Hydrazine for Chemical Hydrogen Storage
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1. Bond−Energy−Electron Relaxation of Be N Nanoclusters and BeX Alloys;Advanced Theory and Simulations;2018-06-20
2. Hydrogen-driven Economy and Utilization;Nanostructured Materials for Next-Generation Energy Storage and Conversion;2016-12-30
3. Computational evaluation of unsaturated carbonitriles as neutral receptor model for beryllium(II) recognition;Journal of Molecular Modeling;2014-11-30
4. Catalytic Dehydrogenation of NH3BH3, N2H4, and N2H4BH3 for Chemical Hydrogen Storage;Energy and Environment Focus;2014-09-01
5. Electrochemical Behavior of Hydrazine Borane in Methanol Solution;Journal of The Electrochemical Society;2014
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