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First principle study of hydrogen storage in doubly substituted Mg based hydrides Mg5MH12 (M = B, Li) and Mg4BLiH12

机译:在双取代的基于Mg的氢化物Mg5MH12(M = B,Li)和Mg4BLiH12中储氢的第一原理研究

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The effect of single and double substitution with lightweight elements Boron (B) and Lithium (Li) on the thermodynamic properties of MgH2 are investigated by using first principles calculations. Our results show an improvement of hydrogen storage properties of double substituted MgH2, in contrast to the case of single substitution, along with a remarkable increase of its gravimetric and volumetric capacities which exceed those of pure MgH2. Given that Mg4LiBH12 exposes a heat of formation around -32.03 kj/mol as well as a gravimetric and volumetric capacity of 9.45 wt% and 123.08 gH(2)/l respectively, it may be considered as a potential candidate for hydrogen storage transportation applications. A detailed analysis of the density of states and charge transfer, of the studied systems, is presented to understand the underlying mechanisms behind MgH2 thermodynamics improvements. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:利用第一性原理计算研究了轻质元素硼(B)和锂(Li)的一次和两次取代对MgH2热力学性质的影响。我们的结果表明,与单取代的情况相比,双取代的MgH2的储氢性能得到了改善,其重量和体积容量显着增加,超过了纯MgH2。鉴于Mg4LiBH12暴露了约-32.03 kj / mol的地层热,以及重量和体积容量分别为9.45 wt%和123.08 gH(2)/ l,它可能被视为储氢运输应用的潜在候选者。提出了对所研究系统的状态密度和电荷转移的详细分析,以了解MgH2热力学改进背后的潜在机理。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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