Magnesium (Mg) and iron (Fe) nanoparticles are prepared by thermal decomposition of bipyridyl complexes of metals. These prepared Mg-Fe (2 : 1) nanoparticles are hydrogenated under 4 MPa hydrogen pressure and 673 K for 48 hours to achieve Mg2FeH6. Their structural analysis was assessed by applying manifold techniques. The hydrogen storage properties of prepared compound were measured by Sieverts type apparatus. The desorption kinetics were measured by high pressure thermal desorption spectrometer (HP-TDS). More than 5 wt% hydrogen released was obtained by the Mg2FeH6 within 5 min, and during rehydrogenation very effective hydrogen absorption rate was observed by the compound
The catalysis of NiFe2O4 nanoparticles on the hydrogen storage performances of magnesium hydride syn...
The hydrogen sorption behavior of the Mg2FeH6-MgH2 hydride system is investigated via in-situ synchr...
With the increasing problems in energy supply and the growing environmental concerns of greenhouse g...
In this work, pure nanostructured Mg2FeH6 is successfully synthesized by sintering of a mixture of 2...
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...
The compound Mg2FeH6 was synthesized from a 2Mg-Fe mixture in a single process through high-energy b...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)Conselho Nacional de Desenvolvimento Ci...
The complex hydride Mg 2FeH 6 is an interesting material for hydrogen storage due to its high gravim...
A mixture of MgH2 and Mg2FeH6 was synthesized by reactive ball milling of magnesium hydride and iron...
In this study we investigated the synthesis and the hydrogen storage properties of Mg2FeH6. The com...
MgH2 nanoparticles were obtained by hydriding ultrafine magnesium particles which were prepared by h...
Mechanochemistry and H-sorption properties of Mg2FeH6-based nanocomposites Mg2FeH6 is a promising ma...
By hydrogen plasma metal reaction method, we obtained Mg, Ni, Co, Cu and Fe nanoparticles. Mg nanopa...
The catalysis of NiFe2O4 nanoparticles on the hydrogen storage performances of magnesium hydride syn...
The hydrogen sorption behavior of the Mg2FeH6-MgH2 hydride system is investigated via in-situ synchr...
With the increasing problems in energy supply and the growing environmental concerns of greenhouse g...
In this work, pure nanostructured Mg2FeH6 is successfully synthesized by sintering of a mixture of 2...
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...
The compound Mg2FeH6 was synthesized from a 2Mg-Fe mixture in a single process through high-energy b...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)Conselho Nacional de Desenvolvimento Ci...
The complex hydride Mg 2FeH 6 is an interesting material for hydrogen storage due to its high gravim...
A mixture of MgH2 and Mg2FeH6 was synthesized by reactive ball milling of magnesium hydride and iron...
In this study we investigated the synthesis and the hydrogen storage properties of Mg2FeH6. The com...
MgH2 nanoparticles were obtained by hydriding ultrafine magnesium particles which were prepared by h...
Mechanochemistry and H-sorption properties of Mg2FeH6-based nanocomposites Mg2FeH6 is a promising ma...
By hydrogen plasma metal reaction method, we obtained Mg, Ni, Co, Cu and Fe nanoparticles. Mg nanopa...
The catalysis of NiFe2O4 nanoparticles on the hydrogen storage performances of magnesium hydride syn...
The hydrogen sorption behavior of the Mg2FeH6-MgH2 hydride system is investigated via in-situ synchr...
With the increasing problems in energy supply and the growing environmental concerns of greenhouse g...