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Effect on specific capacity and de-hydrogenation efficiency in doped-MgH2

机译:对掺杂MgH2的比容量和脱氢效率的影响

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Effect on specific capacity and de-hydrogenation efficiency of MgH2 are studied with sequential doping of La, Ce, Al, Li and Ni using Density Functional Theory. Doping of La and Ce enhance the unit cell volume and thus decrease the volumetric capacity, while, doping of Al, Li and Ni decrease the unit cell volume and subsequently increase the volumetric capacity. Among, them, doping of Ni decreases the unit cell volume the most and hence provides highest volumetric capacity. Gravimetric capacities get increased with the following trends of doping; Ce < La < Ni < Al < Li in accordance to the mass of the dopant. It is proved from the analysis of density of states that the desorption of H-2 will occur from the nearest neighbor H atoms of dopant La and Ce, while, for doping of Al, Li and Ni, desorption will take place from the whole crystal structure. H-2 desorption barriers decrease according to the following trends of dopants; La > Ce > Al > Li equivalent to Ni. With co-doping of Ni, MgH2R-Ni is formed, and it exhibit decrement of unit cell volume in comparison to MgH2R. Lesser average bond length of MgH2RNi leads to localization of density of states across Fermi energy enabling easier electron transfer with lesser H-2 de-sorption energy. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:利用密度泛函理论研究了La,Ce,Al,Li和Ni的顺序掺杂对MgH2比容量和脱氢效率的影响。 La和Ce的掺杂增加了晶胞体积,因此减小了体积容量,而Al,Li和Ni的掺杂减小了晶胞体积,随后增加了体积容量。其中,Ni的掺杂最大程度地降低了晶胞体积,因此提供了最高的体积容量。随着以下掺杂趋势,重量分析能力得到提高;根据掺杂剂的质量,Ce Ce> Al> Li相当于Ni。与Ni共掺杂,形成MgH 2 R-Ni,并且与MgH 2 R相比,其表现出单位晶胞体积的减少。 MgH2RNi的平均键长越短,费米能量上的态密度就越局限,从而使电子转移更容易,而H-2解吸能越小。 (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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