Mg/transition-metal nanomaterials for efficient hydrogen storageMagnesium metal is a prominent element for solid-state hydrogen storage due to its large abundance in earth’s crust and its high weight and volumetric hydrogen uptakes. However, hydrogen sorption suffers from sluggish kinetics and the formed hydride is too stable for applications working under ambient conditions. The former issue can be solved by developing composites combining two hydrides, MgH2 and TiH2 at the nanoscale. These materials are synthesized by mechanical milling under reactive atmosphere. By this technique, the formation of nanocomposites and their hydrogenation can be obtained in a single-step. Moreover, these materials can be produced at large scale for applicat...
Le développement de l’hydrogène en tant que nouveau vecteur d’énergie demande de pouvoir le stocker ...
In order to obtain faster hydrogen sorption kinetics, MgH2-Ti nanocomposites were prepared by high-e...
Philosophiae Doctor - PhDThe main objective of this study was to advance kinetic performances of for...
Mg/transition-metal nanomaterials for efficient hydrogen storageMagnesium metal is a prominent eleme...
This thesis is dedicated to the study of novel magnesium-rich compounds for solid state hydrogen sto...
Thèse financée dans le cadre du projet européen IP NESSYThe aim of this thesis was the principles of...
Mg-based nanocrystalline alloys or nanocomposites are promising materials for hydrogen storage in th...
International audienceMagnesium is a remarkable hydrogen storage material due to its ability to reve...
none5siMgH2, MgH2-TiH2 nanocomposites and their deuterated analogues have been obtained by reactive ...
Although hydrogen is widely recognized as a promising energy carrier, its widespread adoption as alt...
Cette thèse est consacrée à l'étude de composés riches en magnésium innovants destinés au stockage s...
Reversible hydrogen sorption coupled with the MgH2 <-> Mg phase transformation was achieved in...
Philosophiae Doctor - PhDMagnesium hydride has long been regarded as a promising candidate for light...
The complex hydride Mg 2FeH 6 is an interesting material for hydrogen storage due to its high gravim...
For the future zero-emission vehicle, hydrogen is of great importance as alternative fuel. For both ...
Le développement de l’hydrogène en tant que nouveau vecteur d’énergie demande de pouvoir le stocker ...
In order to obtain faster hydrogen sorption kinetics, MgH2-Ti nanocomposites were prepared by high-e...
Philosophiae Doctor - PhDThe main objective of this study was to advance kinetic performances of for...
Mg/transition-metal nanomaterials for efficient hydrogen storageMagnesium metal is a prominent eleme...
This thesis is dedicated to the study of novel magnesium-rich compounds for solid state hydrogen sto...
Thèse financée dans le cadre du projet européen IP NESSYThe aim of this thesis was the principles of...
Mg-based nanocrystalline alloys or nanocomposites are promising materials for hydrogen storage in th...
International audienceMagnesium is a remarkable hydrogen storage material due to its ability to reve...
none5siMgH2, MgH2-TiH2 nanocomposites and their deuterated analogues have been obtained by reactive ...
Although hydrogen is widely recognized as a promising energy carrier, its widespread adoption as alt...
Cette thèse est consacrée à l'étude de composés riches en magnésium innovants destinés au stockage s...
Reversible hydrogen sorption coupled with the MgH2 <-> Mg phase transformation was achieved in...
Philosophiae Doctor - PhDMagnesium hydride has long been regarded as a promising candidate for light...
The complex hydride Mg 2FeH 6 is an interesting material for hydrogen storage due to its high gravim...
For the future zero-emission vehicle, hydrogen is of great importance as alternative fuel. For both ...
Le développement de l’hydrogène en tant que nouveau vecteur d’énergie demande de pouvoir le stocker ...
In order to obtain faster hydrogen sorption kinetics, MgH2-Ti nanocomposites were prepared by high-e...
Philosophiae Doctor - PhDThe main objective of this study was to advance kinetic performances of for...