1st International Conference on Hydrogen Storage, Embrittlement and Applications (Hy-SEA 2014), Rio de Janeiro, BRAZIL, OCT 26-30, 2014International audienceNanostructured Mg based bulk materials were prepared using a new processing route: consolidation by high pressure torsion (HPT) of ultrafine powders obtained by arc plasma method. The bulk material was mainly composed of ultrafine Mg grains and dispersed nanosized MgO. In comparison to pure Mg ultrafine powders prepared using only arc plasma method, the hydrogenation enthalpy was slightly increased and the absorption activation energy was reduced through the HPT treatment. The structure refinement and the fragmentation of the MgO layer induced by the HPT account for the improved hydroge...
The high hydrogen storage capacity of magnesium, coupled with the reversibility of hydrogen absorpti...
In this work, we developed a method to prepare ultrafine Mg nanoparticles around 40 nm by acetylene ...
After Mg and Ni nanoparticles were fabricated by hydrogen plasma metal reaction, Mg-rich MgxNi100-x(...
High-pressure torsion (HPT) is widely used as a severe plastic deformation technique to create ultra...
Cette étude porte principalement sur l’influence de déformations plastiques sévères réalisées par to...
Mg-based nanocrystalline alloys or nanocomposites are promising materials for hydrogen storage in th...
International audienceMgH2-based nanocomposites are excellent candidates for hydrogen storage applic...
<div><p>Magnesium (Mg) is a light metal with relatively low cost. Its hydride (MgH2) is interesting ...
The preparation by high energy ball milling of nanostructured Mg-based materials with suitable prope...
Nowadays alternative energies are an extremely important topic and the possibility of using hydrogen...
In the present work, Mg-rich Mg-Ni ultrafine powders were prepared through an arc plasma method. The...
Mg-based materials are very promising for hydrogen storage applications. However, both the kinetic a...
By hydrogen plasma metal reaction method, we obtained Mg, Ni, Co, Cu and Fe nanoparticles. Mg nanopa...
Hydrogen storage nanocomposites prepared by high energy reactive ball milling of magnesium and vanad...
In order to improve the hydrogen storage properties of Mg, Mg@Mg17Al12 ultrafine particles (UFPs) wi...
The high hydrogen storage capacity of magnesium, coupled with the reversibility of hydrogen absorpti...
In this work, we developed a method to prepare ultrafine Mg nanoparticles around 40 nm by acetylene ...
After Mg and Ni nanoparticles were fabricated by hydrogen plasma metal reaction, Mg-rich MgxNi100-x(...
High-pressure torsion (HPT) is widely used as a severe plastic deformation technique to create ultra...
Cette étude porte principalement sur l’influence de déformations plastiques sévères réalisées par to...
Mg-based nanocrystalline alloys or nanocomposites are promising materials for hydrogen storage in th...
International audienceMgH2-based nanocomposites are excellent candidates for hydrogen storage applic...
<div><p>Magnesium (Mg) is a light metal with relatively low cost. Its hydride (MgH2) is interesting ...
The preparation by high energy ball milling of nanostructured Mg-based materials with suitable prope...
Nowadays alternative energies are an extremely important topic and the possibility of using hydrogen...
In the present work, Mg-rich Mg-Ni ultrafine powders were prepared through an arc plasma method. The...
Mg-based materials are very promising for hydrogen storage applications. However, both the kinetic a...
By hydrogen plasma metal reaction method, we obtained Mg, Ni, Co, Cu and Fe nanoparticles. Mg nanopa...
Hydrogen storage nanocomposites prepared by high energy reactive ball milling of magnesium and vanad...
In order to improve the hydrogen storage properties of Mg, Mg@Mg17Al12 ultrafine particles (UFPs) wi...
The high hydrogen storage capacity of magnesium, coupled with the reversibility of hydrogen absorpti...
In this work, we developed a method to prepare ultrafine Mg nanoparticles around 40 nm by acetylene ...
After Mg and Ni nanoparticles were fabricated by hydrogen plasma metal reaction, Mg-rich MgxNi100-x(...