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Effect of Al presence and synthesis method on phase composition of the hydrogen absorbing La-Mg-Ni-based compounds

机译:Al的存在和合成方法对吸氢La-Mg-Ni基化合物相组成的影响

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Results for (La,Mg)Ni-3.5 and (La,Mg)(Ni,Al)(3.5) systems synthesized by metallurgical and mechanochemical techniques are reported. Powder X-ray and neutron diffraction combined with Rietveld refinements and profile analysis show that depending on the applied synthesis method various structurally related phases can be obtained for the same nominal composition. The hexagonal A(2)B(7)-type structure incorporating aluminum, with the refined composition La0.77Mg0.23Ni3.41Al0.09, has been identified. Al atoms occupy 12% of the 6h site within the LaNi5 slabs. This intermetallic phase absorbs hydrogen (deuterium) when exposed to 10 bar of H-2 (D-2) gas at room temperature. The H(D)-containing phase expands isotropically and retains the original symmetry of the parent compound. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:报告了通过冶金和机械化学技术合成的(La,Mg)Ni-3.5和(La,Mg)(Ni,Al)(3.5)系统的结果。粉末X射线和中子衍射结合Rietveld精炼和轮廓分析表明,根据所应用的合成方法,对于相同的标称组成,可以得到各种结构相关的相。已经确定了包含铝的六角形A(2)B(7)型结构,其精炼成分为La0.77Mg0.23Ni3.41Al0.09。 Al原子占据LaNi5平板中6h位置的12%。当在室温下暴露于10 bar的H-2(D-2)气体时,该金属间相吸收氢(氘)。含H(D)的相各向同性膨胀并保留母体化合物的原始对称性。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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