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Lithium Hydrazinidoborane: A Polymorphic Material with Potential for Chemical Hydrogen Storage

机译:氢肼基硼烷锂:一种具有化学储氢潜力的多态材料

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摘要

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 H2 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.
机译:在本文中,我们描述了氢肼基硼烷锂(LiN2H4BH3,LiHB)的新晶体相的合成和表征(化学,结构和热),这是一种用于固态化学氢存储的新材料。我们提供的证据表明,肼基硼烷锂是一种多晶型材料,具有稳定的低温相和亚稳定的高温相。前者称为β-LiHB,后者称为α-LiHB。 DSC和XRD的结果表明,过渡相发生在90°C左右。在此基础上,解决了新型β-LiHB相的晶体结构。通过TGA,DSC和等温脱氢验证了该材料用于固态化学氢存储的潜力。在形成α-LiHB相时,硼烷脱氢。在150°C下,它可以生成10 wt%的纯H2,同时形成由具有线性和环状单元的聚合物组成的固体残留物。初步提出了乙硼烷[(LiN2H3)2BH2]〜+ [BH4]〜-作为反应中间体的双(肼化锂)反应机理,以突出我们条件下β-LiHB的分解。

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