In our previous work, TaF5 and VCl3 were added to Mg, leading to the preparation of samples with good hydriding and dehydriding properties. In this work, Ni was added together with TaF5 and VCl3 to increase the reaction rates with hydrogen and the hydrogen-storage capacity of Mg. The addition of Ni together with TaF5 and VCl3 improved the hydriding and dehydriding properties of the TaF5 and VCl3-added Mg. MgH2 was also added with Ni, TaF5, and VCl3 and Mg-x wt% MgH2-1.25 wt% Ni-1.25 wt% TaF5-1.25 wt% VCl3 (x = 0, 1, 5, and 10) were prepared by reactive mechanical milling. The addition of MgH2 decreased the particle size, lowered the temperature at which hydrogen begins to release rapidly, and increased the hydriding and dehydriding rates fo...
Magnesium hydride (MgH2) has become popular to study in hydrogen storage materials research due to i...
We tried to improve the H2-sorption properties of Mg by mechanical grinding under H2 (reactive mecha...
Metal hydrides can store more hydrogen per unit volume than normal high pressure or cryogenic techni...
We compared the hydrogenation and dehydrogenation properties of Mg-based alloys to which small amoun...
Among samples of Mg-Ni, Mg-Ni-5Fe2O3, and Mg-Ni-5Fe, Mg-Ni-5Fe had the highest hydriding and dehydri...
An Mg-10wt%Ni-5wt%Fe-5wt%Ti sample was prepared by mechanical grinding under H2 (reactive mechanical...
In this work, Mg was employed as a starting material. Ni, Fe and Ti were selected as additives to im...
The 71.5%Mg–23.5%Ni–5%Fe alloy prepared by reactive mechanical grinding for 4 h does not need activa...
International audienceIn order to improve the hydrogenation/dehydrogenation properties of the Mg/MgH...
In order to improve the hydrogen-storage properties of magnesium, oxides, metallic element(s) and a ...
A sample composition has been designed based on previously reported data. An 80 wt%Mg–13.33 wt%Ni–6....
Three alloys are prepared through mechanical alloying and the hydrogen storage properties have been ...
In this work, polyvinylpyrrolidone (PVP) coated Mg95Ni5 nano-composites were prepared by hydriding c...
Abstract Three hydride-forming mechanical alloys of magnesium with the addition of 10 wt % Ni were...
Among all the solid materials studied so far, magnesium is an attractive possibility to store hydrog...
Magnesium hydride (MgH2) has become popular to study in hydrogen storage materials research due to i...
We tried to improve the H2-sorption properties of Mg by mechanical grinding under H2 (reactive mecha...
Metal hydrides can store more hydrogen per unit volume than normal high pressure or cryogenic techni...
We compared the hydrogenation and dehydrogenation properties of Mg-based alloys to which small amoun...
Among samples of Mg-Ni, Mg-Ni-5Fe2O3, and Mg-Ni-5Fe, Mg-Ni-5Fe had the highest hydriding and dehydri...
An Mg-10wt%Ni-5wt%Fe-5wt%Ti sample was prepared by mechanical grinding under H2 (reactive mechanical...
In this work, Mg was employed as a starting material. Ni, Fe and Ti were selected as additives to im...
The 71.5%Mg–23.5%Ni–5%Fe alloy prepared by reactive mechanical grinding for 4 h does not need activa...
International audienceIn order to improve the hydrogenation/dehydrogenation properties of the Mg/MgH...
In order to improve the hydrogen-storage properties of magnesium, oxides, metallic element(s) and a ...
A sample composition has been designed based on previously reported data. An 80 wt%Mg–13.33 wt%Ni–6....
Three alloys are prepared through mechanical alloying and the hydrogen storage properties have been ...
In this work, polyvinylpyrrolidone (PVP) coated Mg95Ni5 nano-composites were prepared by hydriding c...
Abstract Three hydride-forming mechanical alloys of magnesium with the addition of 10 wt % Ni were...
Among all the solid materials studied so far, magnesium is an attractive possibility to store hydrog...
Magnesium hydride (MgH2) has become popular to study in hydrogen storage materials research due to i...
We tried to improve the H2-sorption properties of Mg by mechanical grinding under H2 (reactive mecha...
Metal hydrides can store more hydrogen per unit volume than normal high pressure or cryogenic techni...