In order to obtain faster hydrogen sorption kinetics, MgH2-Fe nanocomposites were prepared by high-energy ball milling. The MgH2 decomposition was studied in samples obtained by changing in a systematic way both the catalyst amount and the degree of microstructural refinement. To this purpose, blends containing increasing Fe concentration have been ball milled in processing conditions able to impart different amount of structural defects. The resulting samples have been characterized by X-ray diffraction to investigate the microstructural features and the phase composition, while the powder morphology and the degree of catalyst dispersion were analyzed by scanning electron microscopy. Differential scanning calorimetry was carried o...
The influence of different milling conditions obtained using two high-energy mills on hydrogen desor...
A systematic investigation of the structural stability, evolution and hydrogenstorage properties of ...
The effect of extended H2 sorption cycles on the structure and on the hydrogen storage performances ...
In order to obtain faster hydrogen sorption kinetics, MgH2-Fe nanocomposites were prepared by high-e...
Mg-based nanostructured hydrides have been synthesized by ball milling using two alternative approac...
Mg-based nanostructured hydrides have been synthesized by ball milling using two alternative approac...
To improve hydrogen desorption properties of MgH2, mechanical milling of MgH2 with low concentration...
The influence of the Co addition and synthesis route on desorption properties of MgH2 were investiga...
We examined the catalytic effect of nano-particle 3d-transition metals on hydrogen desorption (HD) p...
MgH2 based composites combined with NaNH2 were synthesized by mechanical milling for three different...
The hydrogen desorption from MgH2–Mg2NiH4 phase mixtures prepared under different ball milling condi...
The microstructure and hydrogen sorption behaviour of MgH2 based nano-hydrides with different additi...
The influence of different milling conditions obtained using two high-energy mills on hydrogen desor...
A systematic investigation of the structural stability, evolution and hydrogenstorage properties of ...
The effect of extended H2 sorption cycles on the structure and on the hydrogen storage performances ...
In order to obtain faster hydrogen sorption kinetics, MgH2-Fe nanocomposites were prepared by high-e...
Mg-based nanostructured hydrides have been synthesized by ball milling using two alternative approac...
Mg-based nanostructured hydrides have been synthesized by ball milling using two alternative approac...
To improve hydrogen desorption properties of MgH2, mechanical milling of MgH2 with low concentration...
The influence of the Co addition and synthesis route on desorption properties of MgH2 were investiga...
We examined the catalytic effect of nano-particle 3d-transition metals on hydrogen desorption (HD) p...
MgH2 based composites combined with NaNH2 were synthesized by mechanical milling for three different...
The hydrogen desorption from MgH2–Mg2NiH4 phase mixtures prepared under different ball milling condi...
The microstructure and hydrogen sorption behaviour of MgH2 based nano-hydrides with different additi...
The influence of different milling conditions obtained using two high-energy mills on hydrogen desor...
A systematic investigation of the structural stability, evolution and hydrogenstorage properties of ...
The effect of extended H2 sorption cycles on the structure and on the hydrogen storage performances ...