We compared the hydrogenation and dehydrogenation properties of Mg-based alloys to which small amounts of transition elements (Ni and Ti), halides (TaF5 and VCl3), and complex hydrides (LiBH4 and NaAlH4) were added through grinding in a hydrogen atmosphere (reactive milling). Mg-1.25Ni-1.25Ti is one of the samples compared, having a composition of 97.5 wt.% Mg + 1.25 wt.% Ni and 1.25 wt.% Ti. Even though Mg-1.25Ni-1.25Ti did not have the highest initial hydrogenation rate, it had the largest quantities of hydrogen absorbed and released for 60 min and the highest initial dehydrogenation rate. In addition, Mg-1.25Ni-1.25Ti did not show the incubation period in the dehydrogenation. We thus investigated the hydrogenation and dehydrogenation pro...
Results on mechanical alloying of binary and ternary Mg-Ti-based mixtures are reported. Using fine-p...
A sample composition has been designed based on previously reported data. An 80 wt%Mg–13.33 wt%Ni–6....
The inexpensive fabrication technique of casting is applied to develop new Mg–Ni based hydrogen stor...
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...
In our previous work, TaF5 and VCl3 were added to Mg, leading to the preparation of samples with goo...
Among samples of Mg-Ni, Mg-Ni-5Fe2O3, and Mg-Ni-5Fe, Mg-Ni-5Fe had the highest hydriding and dehydri...
In order to improve the hydrogen-storage properties of magnesium, oxides, metallic element(s) and a ...
The 71.5%Mg–23.5%Ni–5%Fe alloy prepared by reactive mechanical grinding for 4 h does not need activa...
It has been well established that hydrogen will react directly and reversibly with a large number of...
It has been well established that hydrogen will react directly and reversibly with a large number of...
Three alloys are prepared through mechanical alloying and the hydrogen storage properties have been ...
The use of reactive mechanical grinding (MG under H2) of magnesium powder improves the hydrogen sorp...
International audienceIn order to improve the hydrogenation/dehydrogenation properties of the Mg/MgH...
Abstract Three hydride-forming mechanical alloys of magnesium with the addition of 10 wt % Ni were...
Results on mechanical alloying of binary and ternary Mg-Ti-based mixtures are reported. Using fine-p...
A sample composition has been designed based on previously reported data. An 80 wt%Mg–13.33 wt%Ni–6....
The inexpensive fabrication technique of casting is applied to develop new Mg–Ni based hydrogen stor...
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...
In our previous work, TaF5 and VCl3 were added to Mg, leading to the preparation of samples with goo...
Among samples of Mg-Ni, Mg-Ni-5Fe2O3, and Mg-Ni-5Fe, Mg-Ni-5Fe had the highest hydriding and dehydri...
In order to improve the hydrogen-storage properties of magnesium, oxides, metallic element(s) and a ...
The 71.5%Mg–23.5%Ni–5%Fe alloy prepared by reactive mechanical grinding for 4 h does not need activa...
It has been well established that hydrogen will react directly and reversibly with a large number of...
It has been well established that hydrogen will react directly and reversibly with a large number of...
Three alloys are prepared through mechanical alloying and the hydrogen storage properties have been ...
The use of reactive mechanical grinding (MG under H2) of magnesium powder improves the hydrogen sorp...
International audienceIn order to improve the hydrogenation/dehydrogenation properties of the Mg/MgH...
Abstract Three hydride-forming mechanical alloys of magnesium with the addition of 10 wt % Ni were...
Results on mechanical alloying of binary and ternary Mg-Ti-based mixtures are reported. Using fine-p...
A sample composition has been designed based on previously reported data. An 80 wt%Mg–13.33 wt%Ni–6....
The inexpensive fabrication technique of casting is applied to develop new Mg–Ni based hydrogen stor...