Hydrogen storage in complex hydrides: Past activities and new trends

Publication date

2022-06-23

Authors

Dematteis, Erika Michela
Amdisen, Mads B.
Autrey, Tom
Barale, Jussara
Bowden, Mark E.
Buckley, Craig E.
Cho, Young Whan
Deledda, Stefano
Dornheim, Martin
de Jongh, PetraISNI 0000000395610073

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

cc_by

Abstract

Intense literature and research efforts have focussed on the exploration of complex hydrides for energy storage applications over the past decades. A focus was dedicated to the determination of their thermodynamic and hydrogen storage properties, due to their high gravimetric and volumetric hydrogen storage capacities, but their application has been limited because of harsh working conditions for reversible hydrogen release and uptake. The present review aims at appraising the recent advances on different complex hydride systems, coming from the proficient collaborative activities in the past years from the research groups led by the experts of the Task 40 'Energy Storage and Conversion Based on Hydrogen' of the Hydrogen Technology Collaboration Programme of the International Energy Agency. An overview of materials design, synthesis, tailoring and modelling approaches, hydrogen release and uptake mechanisms and thermodynamic aspects are reviewed to define new trends and suggest new possible applications for these highly tuneable materials.

Keywords

alanates, amides, ammines, borates, borohydrides, complex hydrides, reactive hydride composites, General Energy

Citation

Dematteis, E M, Amdisen, M B, Autrey, T, Barale, J, Bowden, M E, Buckley, C E, Cho, Y W, Deledda, S, Dornheim, M, De Jongh, P, Grinderslev, J B, Gizer, G, Gulino, V, Hauback, B C, Heere, M, Heo, T W, Humphries, T D, Jensen, T R, Kang, S Y, Lee, Y S, Li, H W, Li, S, Møller, K T, Ngene, P, Orimo, S I, Paskevicius, M, Polanski, M, Takagi, S, Wan, L, Wood, B C, Hirscher, M & Baricco, M 2022, 'Hydrogen storage in complex hydrides : Past activities and new trends', Progress in Energy, vol. 4, no. 3, 032009. https://doi.org/10.1088/2516-1083/ac7499