化学
脱氢
氢气储存
解吸
动力学
氢
氢化物
粒径
等温过程
扩散
吸收(声学)
动能
氢化镁
分析化学(期刊)
无机化学
物理化学
热力学
催化作用
有机化学
吸附
材料科学
物理
量子力学
复合材料
作者
Yongfeng Liu,Kai Zhong,Kun Luo,Mingxia Gao,Hongge Pan,Qidong Wang
摘要
High operating temperature and slow kinetics retard the practical applications of the Li-Mg-N-H system for hydrogen storage. To alleviate these problems, a first attempt was carried out by synthesizing Li(2)MgN(2)H(2) through sintering a mixture of Mg(NH(2))(2)-2LiNH(2) and investigating its size-dependent hydrogen storage performance. A dramatically enhanced kinetics for hydrogen absorption/desorption was achieved with a reduction in the particle size. For the dehydrogenation reaction, a three-dimensional diffusion-controlled kinetic mechanism was identified for the first time by analyzing isothermal hydrogen desorption curves with a linear plot method. The experimental improvement and mechanistic understanding on the dehydrogenation kinetics of the Li-Mg-N-H system shed light on how to further decrease the operating temperature and enhance the hydrogen absorption/desorption rate of the amide/hydride combined materials.
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