The hydrogen desorption from MgH2–Mg2NiH4 phase mixtures prepared under different ball milling conditions has been investigated and correlated with the samples microstructure. SEM, XRD and XPS were performed to explore the microstructure in order to ascertain the reciprocal influence of the two phases on the de-hydrogenation reaction, and in particular on the hydrogen desorption temperature. Ball milling imparts different microstructures to the phase mixtures according to the adopted processing parameters. The resulting microstructure influences the hydrogen desorption which appears to occur by a limited number of well-defined channels at characteristic temperatures. A microstructural interpretation of this behavior is proposed on the basis...
Mg-based nanostructured hydrides have been synthesized by ball milling using two alternative approac...
MgH2/graphite composite was fabricated by mech. milling elemental ingredients in hydrogen using a sp...
We examined the catalytic effect of nano-particle 3d-transition metals on hydrogen desorption (HD) p...
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...
In order to obtain faster hydrogen sorption kinetics, MgH2-Fe nanocomposites were prepared by high-e...
In order to obtain faster hydrogen sorption kinetics, MgH2-Fe nanocomposites were prepared by high-...
The hydrogen desorption properties of MgH2-LiAlH4 composites obtained by mechanical milling for diff...
Mg-based nanostructured hydrides have been synthesized by ball milling using two alternative approac...
MgH2 based composites combined with NaNH2 were synthesized by mechanical milling for three different...
To improve hydrogen desorption properties of MgH2, mechanical milling of MgH2 with low concentration...
To understand the influence of various crystallographic phases on hydrogen storage properties, ball ...
Mg-based nanostructured hydrides have been synthesized by ball milling using two alternative approac...
MgH2/graphite composite was fabricated by mech. milling elemental ingredients in hydrogen using a sp...
We examined the catalytic effect of nano-particle 3d-transition metals on hydrogen desorption (HD) p...
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...
In order to obtain faster hydrogen sorption kinetics, MgH2-Fe nanocomposites were prepared by high-e...
In order to obtain faster hydrogen sorption kinetics, MgH2-Fe nanocomposites were prepared by high-...
The hydrogen desorption properties of MgH2-LiAlH4 composites obtained by mechanical milling for diff...
Mg-based nanostructured hydrides have been synthesized by ball milling using two alternative approac...
MgH2 based composites combined with NaNH2 were synthesized by mechanical milling for three different...
To improve hydrogen desorption properties of MgH2, mechanical milling of MgH2 with low concentration...
To understand the influence of various crystallographic phases on hydrogen storage properties, ball ...
Mg-based nanostructured hydrides have been synthesized by ball milling using two alternative approac...
MgH2/graphite composite was fabricated by mech. milling elemental ingredients in hydrogen using a sp...
We examined the catalytic effect of nano-particle 3d-transition metals on hydrogen desorption (HD) p...