In this paper we address some aspects of the kinetics of hydrogen absorption and desorption of Mg2FeH6 nanocomposite powder. The Mg2FeH6 material was prepared from a 2Mg-Fe composition by reactive milling under H2 pressure at room temperature. After mechano-chemical processing, the material was mainly constituted of Mg2FeH6 having a hydrogen gravimetric capacity corresponding to 94 % of the theoretical capacity. The kinetics of hydrogen absorption at constant temperature and the transformation of phases during this process were studied. The kinetics of hydrogen absorption presented a two-step behaviour. First, β-MgH2 was formed with faster kinetics than Mg2FeH6 under constant temperature and H2 pressure. Then, β-MgH2 reacted with α-Fe formi...
Mg-based nanostructured hydrides have been synthesized by ball milling using two alternative approac...
The transition metal complex hydride Mg2FeH6 has been successfully synthesized utilizing mechanical ...
Mg2FeH6 is regarded as potential hydrogen and thermochemical storage medium due to its high volumetr...
Pure Mg2FeH6 compounds with two different morphologies have been successfully synthesized directly b...
Magnesium (Mg) and iron (Fe) nanoparticles are prepared by thermal decomposition of bipyridyl comp...
In this study we investigated the synthesis and the hydrogen storage properties of Mg2FeH6. The com...
In this work, pure nanostructured Mg2FeH6 is successfully synthesized by sintering of a mixture of 2...
The compound Mg2FeH6 was synthesized from a 2Mg-Fe mixture in a single process through high-energy b...
Pure Mg2FeH6 compounds with two different morphologies have been successfully synthesized directly b...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)Conselho Nacional de Desenvolvimento Ci...
The hydrogen sorption behavior of the Mg2FeH6-MgH2 hydride system is investigated via in-situ synchr...
The complex hydride Mg 2FeH 6 is an interesting material for hydrogen storage due to its high gravim...
Mechanochemistry and H-sorption properties of Mg2FeH6-based nanocomposites Mg2FeH6 is a promising ma...
A mixture of MgH2 and Mg2FeH6 was synthesized by reactive ball milling of magnesium hydride and iron...
With the increasing problems in energy supply and the growing environmental concerns of greenhouse g...
Mg-based nanostructured hydrides have been synthesized by ball milling using two alternative approac...
The transition metal complex hydride Mg2FeH6 has been successfully synthesized utilizing mechanical ...
Mg2FeH6 is regarded as potential hydrogen and thermochemical storage medium due to its high volumetr...
Pure Mg2FeH6 compounds with two different morphologies have been successfully synthesized directly b...
Magnesium (Mg) and iron (Fe) nanoparticles are prepared by thermal decomposition of bipyridyl comp...
In this study we investigated the synthesis and the hydrogen storage properties of Mg2FeH6. The com...
In this work, pure nanostructured Mg2FeH6 is successfully synthesized by sintering of a mixture of 2...
The compound Mg2FeH6 was synthesized from a 2Mg-Fe mixture in a single process through high-energy b...
Pure Mg2FeH6 compounds with two different morphologies have been successfully synthesized directly b...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)Conselho Nacional de Desenvolvimento Ci...
The hydrogen sorption behavior of the Mg2FeH6-MgH2 hydride system is investigated via in-situ synchr...
The complex hydride Mg 2FeH 6 is an interesting material for hydrogen storage due to its high gravim...
Mechanochemistry and H-sorption properties of Mg2FeH6-based nanocomposites Mg2FeH6 is a promising ma...
A mixture of MgH2 and Mg2FeH6 was synthesized by reactive ball milling of magnesium hydride and iron...
With the increasing problems in energy supply and the growing environmental concerns of greenhouse g...
Mg-based nanostructured hydrides have been synthesized by ball milling using two alternative approac...
The transition metal complex hydride Mg2FeH6 has been successfully synthesized utilizing mechanical ...
Mg2FeH6 is regarded as potential hydrogen and thermochemical storage medium due to its high volumetr...