Lithium Hydrazinidoborane: A Polymorphic Material with Potential for Chemical Hydrogen Storage
Author(s) -
Romain Moury,
Umit B. Demirci,
Voraksmy Ban,
Yaroslav Filinchuk,
Takayuki Ichikawa,
Liang Zeng,
Kiyotaka Goshome,
Philippe Miele
Publication year - 2014
Publication title -
chemistry of materials
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.741
H-Index - 375
eISSN - 1520-5002
pISSN - 0897-4756
DOI - 10.1021/cm500980b
Subject(s) - diborane , hydrogen storage , lithium (medication) , thermal decomposition , hydrogen , materials science , crystal structure , phase (matter) , metastability , chemistry , chemical decomposition , chemical engineering , inorganic chemistry , decomposition , crystallography , organic chemistry , medicine , boron , engineering , endocrinology
Herein, we describe the synthesis and characterization (chemical, structural, and thermal) of a new crystal phase of lithium hydrazinidoborane (LiN2H4BH3, LiHB), which is a new material for solid-state chemical hydrogen storage. We put in evidence that lithium hydrazinidoborane is a polymorphic material, with a stable low-temperature phase and a metastable high-temperature phase. The former is called β-LiHB and the latter α-LiHB. Results from DSC and XRD showed that the transition phase occurs at around 90 °C. On this basis, the crystal structure of the novel β-LiHB phase was solved. The potential of this material for solid-state chemical hydrogen storage was verified by TGA, DSC, and isothermal dehydrogenations. Upon the formation of the α-LiHB phase, the borane dehydrogenates. At 150 °C, it is able to generate 10 wt % of pure H 2 while a solid residue consisting of polymers with linear and cyclic units forms. Reaction mechanisms and formation of bis(lithium hydrazide) of diborane [(LiN2H3)2BH2] +[BH4]- as a reaction intermediate are tentatively proposed to highlight the decomposition of β-LiHB in our conditions. © 2014 American Chemical Society
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