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Updated: Apr 14, 2026

Supercritical Nitrogen Processing for the Purification of Reactive Porous Materials
Published on: May 15, 2015
Key study on the potential of hydrazine bisborane for solid- and liquid-state chemical hydrogen storage
Sergii Pylypko1, Eddy Petit1, Pascal G Yot1
1†IEM (Institut Europeen des Membranes), UMR 5635 (CNRS-ENSCM-UM) and ‡Institut Charles Gerhardt Montpellier, UMR 5253 (UM-CNRS-ENSCM), Universite de Montpellier, Place Eugène Bataillon, F- 34095, Montpellier Cedex 05, France.
Abstract:
Hydrazine bisborane N2H4(BH3)2 (HBB; 16.8 wt %) recently re-emerged as a potential hydrogen storage material. However, such potential is controversial: HBB was seen as a hazardous compound up to 2010, but now it would be suitable for hydrogen storage. In this context, we focused on fundamentals of HBB because they are missing in the literature and should help to shed light on its effective potential while taking into consideration any risk. Experimental/computational methods were used to get a complete characterization data sheet, including, e.g., XRD, NMR, FTIR, Raman, TGA, and DSC. From the reported results and discussion, it is concluded that HBB has potential in the field of chemical hydrogen storage given that both thermolytic and hydrolytic dehydrogenations were analyzed. In solid-state chemical hydrogen storage, it cannot be used in the pristine state (risk of explosion during dehydrogenation) but can be used for the synthesis of derivatives with improved dehydrogenation properties. In liquid-state chemical hydrogen storage, it can be studied for room-temperature dehydrogenation, but this requires the development of an active and selective metal-based catalyst. HBB is a thus a candidate for chemical hydrogen storage.
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