A sample composition has been designed based on previously reported data. An 80 wt%Mg–13.33 wt%Ni–6.67 wt%Fe (referred to as Mg–13.33Ni–6.67Fe) sample exhibited higher hydriding and dehydriding rates after activation and a larger hydrogen storage capacity compared to those of other mixtures prepared under similar conditions. After activation (at n = 3), the sample absorbed 4.60 wt%H for 5 min and 5.61 wt%H for 60 min at 593 K under 12 bar H2. The sample desorbed 1.57 wt%H for 5 min and 3.92 wt%H for 30 min at 593 K under 1.0 bar H2. Rietveld analysis of the XRD pattern using FullProf program showed that the as-milled Mg–13.33Ni–6.67Fe sample contained Mg(OH)2 and MgH2 in addition to Mg, Ni, and Fe. The Mg(OH)2 phase is believed to be formed...
A mixture of MgH2 and Mg2FeH6 was synthesized by reactive ball milling of magnesium hydride and iron...
We compared the hydrogenation and dehydrogenation properties of Mg-based alloys to which small amoun...
In order to improve the hydrogen-storage properties of magnesium, oxides, metallic element(s) and a ...
Among samples of Mg-Ni, Mg-Ni-5Fe2O3, and Mg-Ni-5Fe, Mg-Ni-5Fe had the highest hydriding and dehydri...
The 71.5%Mg–23.5%Ni–5%Fe alloy prepared by reactive mechanical grinding for 4 h does not need activa...
Abstract Magnesium-rich Mg\u2013Ni\u2013Fe intermetallic compounds have been prepared by two differ...
In this work, Mg was employed as a starting material. Ni, Fe and Ti were selected as additives to im...
An Mg-10wt%Ni-5wt%Fe-5wt%Ti sample was prepared by mechanical grinding under H2 (reactive mechanical...
Three alloys are prepared through mechanical alloying and the hydrogen storage properties have been ...
In this study we investigated the synthesis and the hydrogen storage properties of Mg2FeH6. The com...
Abstract Mg-Ni-Fe magnesium-rich intermetallic compounds were prepared following two distinct routes...
International audienceIn order to improve the hydrogenation/dehydrogenation properties of the Mg/MgH...
Among all the solid materials studied so far, magnesium is an attractive possibility to store hydrog...
In this work, a systematic study on the fabrication of Mg–Ni hydrogen storage materials is presented...
The effects of different synthesis procedures on the microstructure and hydrogen uptake characterist...
A mixture of MgH2 and Mg2FeH6 was synthesized by reactive ball milling of magnesium hydride and iron...
We compared the hydrogenation and dehydrogenation properties of Mg-based alloys to which small amoun...
In order to improve the hydrogen-storage properties of magnesium, oxides, metallic element(s) and a ...
Among samples of Mg-Ni, Mg-Ni-5Fe2O3, and Mg-Ni-5Fe, Mg-Ni-5Fe had the highest hydriding and dehydri...
The 71.5%Mg–23.5%Ni–5%Fe alloy prepared by reactive mechanical grinding for 4 h does not need activa...
Abstract Magnesium-rich Mg\u2013Ni\u2013Fe intermetallic compounds have been prepared by two differ...
In this work, Mg was employed as a starting material. Ni, Fe and Ti were selected as additives to im...
An Mg-10wt%Ni-5wt%Fe-5wt%Ti sample was prepared by mechanical grinding under H2 (reactive mechanical...
Three alloys are prepared through mechanical alloying and the hydrogen storage properties have been ...
In this study we investigated the synthesis and the hydrogen storage properties of Mg2FeH6. The com...
Abstract Mg-Ni-Fe magnesium-rich intermetallic compounds were prepared following two distinct routes...
International audienceIn order to improve the hydrogenation/dehydrogenation properties of the Mg/MgH...
Among all the solid materials studied so far, magnesium is an attractive possibility to store hydrog...
In this work, a systematic study on the fabrication of Mg–Ni hydrogen storage materials is presented...
The effects of different synthesis procedures on the microstructure and hydrogen uptake characterist...
A mixture of MgH2 and Mg2FeH6 was synthesized by reactive ball milling of magnesium hydride and iron...
We compared the hydrogenation and dehydrogenation properties of Mg-based alloys to which small amoun...
In order to improve the hydrogen-storage properties of magnesium, oxides, metallic element(s) and a ...