Enhanced hydrogen storage kinetics and air stability of nanoconfined NaAlH4 in graphene oxide framework
Author:
Affiliation:
1. Department of Chemical and Biomolecular Engineering, Korea Advanced Institute of Science and Technology (KAIST), Daejeon 34141, Republic of Korea
Abstract
Funder
National Research Foundation of Korea
Publisher
Royal Society of Chemistry (RSC)
Subject
General Chemical Engineering,General Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2021/RA/D1RA05111C
Reference38 articles.
1. Hydrogen nexus in a sustainable energy future
2. Nanostructured Metal Hydrides for Hydrogen Storage
3. Novel hydrogen storage materials: A review of lightweight complex hydrides
4. Ti-doped alkali metal aluminium hydrides as potential novel reversible hydrogen storage materials
5. Active Ti Species in TiCl3-Doped NaAlH4. Mechanism for Catalyst Deactivation
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1. Graphene Supports for Metal Hydride and Energy Storage Applications;Crystals;2023-05-27
2. Paving the Way to the Fuel of the Future—Nanostructured Complex Hydrides;International Journal of Molecular Sciences;2022-12-21
3. Recent Advances and Reliable Assessment of Solid‐State Materials for Hydrogen Storage: A Step Forward toward a Sustainable H 2 Economy;Advanced Sustainable Systems;2022-09-15
4. Recent Development in Nanoconfined Hydrides for Energy Storage;International Journal of Molecular Sciences;2022-06-26
5. An alternative platform of solid-state hydrides with polymers as composite/encapsulation for hydrogen storage applications: Effects in intermetallic and complex hydrides;International Journal of Hydrogen Energy;2022-03
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