Mg2FeH6 is regarded as potential hydrogen and thermochemical storage medium due to its high volumetric hydrogen (150 kg/m3) and energy (0.49 kWh/L) densities. In this work, the mechanism of formation of Mg2FeH6 under equilibrium conditions is thoroughly investigated applying volumetric measurements, X-ray diffraction (XRD), X-ray absorption near edge structure (XANES), and the combination of scanning transmission electron microscopy (STEM) with energy-dispersive X-ray spectroscopy (EDS) and high-resolution transmission electron microscopy (HR-TEM). Starting from a 2Mg:Fe stoichiometric powder ratio, thorough characterizations of samples taken at different states upon hydrogenation under equilibrium conditions confirm that the formation mech...
Magnesium (Mg) and iron (Fe) nanoparticles are prepared by thermal decomposition of bipyridyl comp...
Synthesis and decomposition mechanisms of ternary Mg2FeH6 were investigated using in-situ synchrotro...
Among all the solid materials studied so far, magnesium is an attractive possibility to store hydrog...
Mg2FeH6 is regarded as potential hydrogen and thermochemical storage medium due to its high volumetr...
Due to the highest known volumetric hydrogen density (150 kg H2.m-3) and a gravimetric hydrogen dens...
In this study we investigated the synthesis and the hydrogen storage properties of Mg2FeH6. The com...
The hydrogen sorption behavior of the Mg2FeH6-MgH2 hydride system is investigated via in-situ synchr...
For many years researchers have been trying to tailor a solid material to store hydrogen in a safe a...
The transition metal complex hydride Mg2FeH6 has been successfully synthesized utilizing mechanical ...
In this work, pure nanostructured Mg2FeH6 is successfully synthesized by sintering of a mixture of 2...
With the increasing problems in energy supply and the growing environmental concerns of greenhouse g...
Pure Mg2FeH6 compounds with two different morphologies have been successfully synthesized directly b...
Pure Mg2FeH6 compounds with two different morphologies have been successfully synthesized directly b...
In this paper we address some aspects of the kinetics of hydrogen absorption and desorption of Mg2Fe...
This paper deals with the formation of new ternary hydride Mg2FeH6 (K2PtCl6type) in a single-step pr...
Magnesium (Mg) and iron (Fe) nanoparticles are prepared by thermal decomposition of bipyridyl comp...
Synthesis and decomposition mechanisms of ternary Mg2FeH6 were investigated using in-situ synchrotro...
Among all the solid materials studied so far, magnesium is an attractive possibility to store hydrog...
Mg2FeH6 is regarded as potential hydrogen and thermochemical storage medium due to its high volumetr...
Due to the highest known volumetric hydrogen density (150 kg H2.m-3) and a gravimetric hydrogen dens...
In this study we investigated the synthesis and the hydrogen storage properties of Mg2FeH6. The com...
The hydrogen sorption behavior of the Mg2FeH6-MgH2 hydride system is investigated via in-situ synchr...
For many years researchers have been trying to tailor a solid material to store hydrogen in a safe a...
The transition metal complex hydride Mg2FeH6 has been successfully synthesized utilizing mechanical ...
In this work, pure nanostructured Mg2FeH6 is successfully synthesized by sintering of a mixture of 2...
With the increasing problems in energy supply and the growing environmental concerns of greenhouse g...
Pure Mg2FeH6 compounds with two different morphologies have been successfully synthesized directly b...
Pure Mg2FeH6 compounds with two different morphologies have been successfully synthesized directly b...
In this paper we address some aspects of the kinetics of hydrogen absorption and desorption of Mg2Fe...
This paper deals with the formation of new ternary hydride Mg2FeH6 (K2PtCl6type) in a single-step pr...
Magnesium (Mg) and iron (Fe) nanoparticles are prepared by thermal decomposition of bipyridyl comp...
Synthesis and decomposition mechanisms of ternary Mg2FeH6 were investigated using in-situ synchrotro...
Among all the solid materials studied so far, magnesium is an attractive possibility to store hydrog...