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Magnesium- and intermetallic alloys-based hydrides for energy storage: modelling, synthesis and properties

Author
Pasquini, Luca; Ares Fernández, José Ramónuntranslated; Fernández Ríos, José Fco.untranslated; Leardini, Fabriceuntranslated
Entity
UAM. Departamento de Física de Materiales
Publisher
IOP Publishing
Date
2022-07-01
Citation
10.1088/2516-1083/ac7190
Progress in Energy 4.3 (2022): 032007
 
 
 
ISSN
2516-1083 (online)
DOI
10.1088/2516-1083/ac7190
Project
info:eu-repo/grantAgreement/EC/H2020/778307/EU//HYDRIDE4MOBILITY; Gobierno de España. RTI2018-099794-B-I00
Editor's Version
https://doi.org/10.1088/2516-1083/ac7190
Subjects
Hydrogen Sorption; Intermetallics Compounds; Magnesium Compounds; Titanium Alloys; Física
URI
http://hdl.handle.net/10486/706696
Note
Artículo escrito por un elevado número de autores, solo se referencian el que aparece en primer lugar, el nombre del grupo de colaboración, si le hubiere, y los autores pertenecientes a la UAM
Rights
© 2022 The Author(s)

Licencia Creative Commons
Esta obra está bajo una Licencia Creative Commons Atribución 4.0 Internacional.

Abstract

Hydrides based on magnesium and intermetallic compounds provide a viable solution to the challenge of energy storage from renewable sources, thanks to their ability to absorb and desorb hydrogen in a reversible way with a proper tuning of pressure and temperature conditions. Therefore, they are expected to play an important role in the clean energy transition and in the deployment of hydrogen as an efficient energy vector. This review, by experts of Task 40 'Energy Storage and Conversion based on Hydrogen' of the Hydrogen Technology Collaboration Programme of the International Energy Agency, reports on the latest activities of the working group 'Magnesium- and Intermetallic alloys-based Hydrides for Energy Storage'. The following topics are covered by the review: multiscale modelling of hydrides and hydrogen sorption mechanisms; synthesis and processing techniques; catalysts for hydrogen sorption in Mg; Mg-based nanostructures and new compounds; hydrides based on intermetallic TiFe alloys, high entropy alloys, Laves phases, and Pd-containing alloys. Finally, an outlook is presented on current worldwide investments and future research directions for hydrogen-based energy storage
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Google™ Scholar:Pasquini, Luca - Ares Fernández, José Ramón - Fernández Ríos, José Fco. - Leardini, Fabrice

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  • Producción científica en acceso abierto de la UAM [16855]

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All the documents from Biblos-e Archivo are protected by copyrights. Some rights reserved.
Universidad Autónoma de Madrid. Biblioteca
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