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  5. Transformation Kinetics of LiBH₄–MgH₂ for Hydrogen Storage
 
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2022
Zweitveröffentlichung
Artikel
Verlagsversion

Transformation Kinetics of LiBH₄–MgH₂ for Hydrogen Storage

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TUDa URI
tuda/9715
URN
urn:nbn:de:tuda-tuprints-228378
DOI
10.26083/tuprints-00022837
Autor:innen
Jin, Ou ORCID 0000-0001-7229-1001
Shang, Yuanyuan
Huang, Xiaohui
Szabó, Dorothée Vinga ORCID 0000-0002-5139-8771
Le, Thi Thu ORCID 0000-0002-9037-0309
Wagner, Stefan
Klassen, Thomas ORCID 0000-0002-9521-3273
Kübel, Christian ORCID 0000-0001-5701-4006
Pistidda, Claudio ORCID 0000-0002-0706-6972
Pundt, Astrid
Kurzbeschreibung (Abstract)

The reactive hydride composite (RHC) LiBH₄–MgH₂ is regarded as one of the most promising materials for hydrogen storage. Its extensive application is so far limited by its poor dehydrogenation kinetics, due to the hampered nucleation and growth process of MgB₂. Nevertheless, the poor kinetics can be improved by additives. This work studied the growth process of MgB₂ with varying contents of 3TiCl₃·AlCl₃ as an additive, and combined kinetic measurements, X-ray diffraction (XRD), and advanced transmission electron microscopy (TEM) to develop a structural understanding. It was found that the formation of MgB₂ preferentially occurs on TiB₂ nanoparticles. The major reason for this is that the elastic strain energy density can be reduced to ~4.7 × 10⁷ J/m³ by creating an interface between MgB₂ and TiB₂, as opposed to ~2.9 × 10⁸ J/m³ at the original interface between MgB₂ and Mg. The kinetics of the MgB₂ growth was modeled by the Johnson–Mehl–Avrami–Kolmogorov (JMAK) equation, describing the kinetics better than other kinetic models. It is suggested that the MgB₂ growth rate-controlling step is changed from interface- to diffusion-controlled when the nucleation center changes from Mg to TiB₂. This transition is also reflected in the change of the MgB₂ morphology from bar- to platelet-like. Based on our observations, we suggest that an additive content between 2.5 and 5 mol% 3TiCl₃·AlCl₃ results in the best enhancement of the dehydrogenation kinetics.

Freie Schlagworte

hydrogen storage

transmission electron...

crystallography

reactive hydride comp...

additive

phase transformation

Sprache
Englisch
Fachbereich/-gebiet
11 Fachbereich Material- und Geowissenschaften > Materialwissenschaft > Gemeinschaftslabor Nanomaterialien
DDC
500 Naturwissenschaften und Mathematik > 540 Chemie
600 Technik, Medizin, angewandte Wissenschaften > 660 Technische Chemie
Institution
Universitäts- und Landesbibliothek Darmstadt
Ort
Darmstadt
Titel der Zeitschrift / Schriftenreihe
Molecules
Jahrgang der Zeitschrift
27
Heftnummer der Zeitschrift
20
ISSN
1420-3049
Verlag
MDPI
Publikationsjahr der Erstveröffentlichung
2022
Verlags-DOI
10.3390/molecules27207005
PPN
501621113
Zusätzliche Infomationen
This article belongs to the Special Issue Advances in Hydrogen Storage Materials for Energy Utilization 2.0

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