Mg-graphite composites, suitable for hydrogen storage, have been synthesized by ball milling metallic Mg with different amounts of graphite and benzene. The microstructure and the surface chemical composition have been characterized in order to explain the kinetics of reaction with hydrogen. The presence of benzene in the milled blends induces a finer powder particle size, helps to preserve the structural integrity of the graphite crystals and results to be necessary for a complete transformation of the milled powder to the hydride phase by thermal reaction with hydrogen gas. On the other hand, it induces a more pronounced reaction of the milled Mg-C composites with the air. The transport properties of the resulting surface contamination la...
Abstract Magnesium hydride\u2013graphite composites produced via ball milling exhibit fast H2 desor...
Anthracite-magnesium composites were prepared via reactive ball milling in cyclohexene, leading to u...
Hydrogenation properties and mechanical stability of pellets made starting from compressed ball-mill...
Mg-graphite composites, suitable for hydrogen storage, have been synthesized by ball milling metalli...
Microstructure and surface chemistry of nanocomposites prepared by ball milling metallic Mg with dif...
The hydrogen storage performances of Mg-C nanocomposites have been studied on materials synthesized ...
Magnesium carbon nanocomposites for hydrogen storage have been synthesized by ball milling with diff...
The hydrogen storage performances of Mg-C nanocomposites have been studied on materials synthesized ...
Magnesium hydride is considered to be one of the most promising hydrogen storage materials, although...
Hydrogen, being a regenerative and environmentally harmless fuel, can play a crucial role in the ene...
A systematic investigation of the structural stability, evolution and hydrogenstorage properties of ...
MgH2/graphite composite was fabricated by mech. milling elemental ingredients in hydrogen using a sp...
Abstract MgH2 + mischmetal nanostructured composite was synthesized from MgH2 plus 6 and 10 wt% of m...
The hydrogen storage properties of ball-milled Mg-Ti-Zr-C composite (1.8 wt.% Ti, 1.9 wt.% Zr and 0....
Abstract Magnesium hydride\u2013graphite composites produced via ball milling exhibit fast H2 desor...
Anthracite-magnesium composites were prepared via reactive ball milling in cyclohexene, leading to u...
Hydrogenation properties and mechanical stability of pellets made starting from compressed ball-mill...
Mg-graphite composites, suitable for hydrogen storage, have been synthesized by ball milling metalli...
Microstructure and surface chemistry of nanocomposites prepared by ball milling metallic Mg with dif...
The hydrogen storage performances of Mg-C nanocomposites have been studied on materials synthesized ...
Magnesium carbon nanocomposites for hydrogen storage have been synthesized by ball milling with diff...
The hydrogen storage performances of Mg-C nanocomposites have been studied on materials synthesized ...
Magnesium hydride is considered to be one of the most promising hydrogen storage materials, although...
Hydrogen, being a regenerative and environmentally harmless fuel, can play a crucial role in the ene...
A systematic investigation of the structural stability, evolution and hydrogenstorage properties of ...
MgH2/graphite composite was fabricated by mech. milling elemental ingredients in hydrogen using a sp...
Abstract MgH2 + mischmetal nanostructured composite was synthesized from MgH2 plus 6 and 10 wt% of m...
The hydrogen storage properties of ball-milled Mg-Ti-Zr-C composite (1.8 wt.% Ti, 1.9 wt.% Zr and 0....
Abstract Magnesium hydride\u2013graphite composites produced via ball milling exhibit fast H2 desor...
Anthracite-magnesium composites were prepared via reactive ball milling in cyclohexene, leading to u...
Hydrogenation properties and mechanical stability of pellets made starting from compressed ball-mill...