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Recent progress in magnesium borohydride Mg(BH4)(2): Fundamentals and applications for energy storage

机译:硼氢化镁Mg(BH4)(2)的最新进展:储能的基本原理和应用

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摘要

Magnesium borohydride (Mg(BH4)(2)) shows interesting properties both from fundamental and applicative points of view. Mg(BH4)(2) has the most complex crystal structures and the largest number of phase polymorphs among other borohydrides. Some of these poly morphs possess a significant porosity, and on the other hand ultra-density with the second highest volumetric hydrogen content among all known hydrides. Additionally, Mg(BH4)(2) demonstrates the lowest theoretical stability, the lowest temperature of hydrogen release, and the mildest conditions for partial rehydrogenation among the alkali and alkaline-earth borohydrides. Mg(BH4)(2) could also be of interest in batteries applications, since Mg metal holds better volumetric capacity and is more abundant than Li. In this work we review recent results on synthesis, structure, hydrogen storage properties and battery-related applications of Mg(BH4)(2). (C) 2016 The Authors. Published by Elsevier Ltd on behalf of Hydrogen Energy Publications LLC.
机译:从基本和应用的角度看,硼氢化镁(Mg(BH4)(2))都显示出有趣的性质。 Mg(BH4)(2)具有最复杂的晶体结构和最多的硼氢化物相多晶型物。这些多晶型物中的一些具有显着的孔隙率,另一方面,在所有已知氢化物中,超密度具有第二高的体积氢含量。此外,Mg(BH4)(2)表现出最低的理论稳定性,最低的氢释放温度以及碱金属和碱土金属硼氢化物中部分再氢化的最温和条件。 Mg(BH4)(2)也可能在电池应用中引起关注,因为Mg金属具有更好的体积容量并且比Li更为丰富。在这项工作中,我们回顾了有关Mg(BH4)(2)的合成,结构,储氢性能和电池相关应用的最新结果。 (C)2016作者。由Elsevier Ltd代表Hydrogen Energy Publications LLC发布。

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