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First principle study of hydrogen storage in doubly substituted Mg based hydrides

机译:双取代镁基氢化物中储氢的第一原理研究

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Ab-initio calculations are carried out to analyze the improvement of hydrogen storage properties, in Mg-based hydrides, through a double substitution (Mg(14)TMAIH(32) and Mg14TMLiH32 TM = Ti, Sc, Zn). The calculations are performed using the all-electron full-potential local-orbital minimum-basis scheme (FPLO9.00-34). Our results indicate a decrease of the heat of formation and desorption temperature, while preserving the gravimetric storage capacity around 7.6 wt%, these outcomes are probably due to the second substitution, Al or Li, which are characterized by their light weights. Discussions of the charge exchange and the density of states are done, to offer more possible explanations of our results. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:进行了从头算的计算,以分析通过双取代(Mg(14)TMAIH(32)和Mg14TMLiH32 TM = Ti,Sc,Zn)在基于Mg的氢化物中氢存储性能的提高。使用全电子全势局部轨道最小基础方案(FPLO9.00-34)进行计算。我们的结果表明,形成热和解吸温度降低了,而重量存储容量却保持在7.6 wt%左右,这些结果可能归因于第二次取代Al或Li,它们的重量轻。进行了电荷交换和状态密度的讨论,以便为我们的结果提供更多可能的解释。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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