Magnesium hydride has been studied extensively for applications as a hydrogen storage material owing to the favourable cost and high gravimetric and volumetric hydrogen densities. However, its high enthalpy of decomposition necessitates high working temperatures for hydrogen desorption while the slow rates for some processes such as hydrogen diffusion through the bulk create challenges for large-scale implementation. The present paper reviews fundamentals of the Mg–H system and looks at the recent advances in the optimisation of magnesium hydride as a hydrogen storage material through the use of catalytic additives, incorporation of defects and an understanding of the rate-limiting processes during absorption and desorptio
Hydrogen storage technology is vital for the application of hydrogen as an alternative fuel for sust...
Magnesium-based hydrogen storage materials are considered to be one of the most promising solid-stat...
This thesis explores suitable materials for energy stores for stationary applications, specifically ...
Magnesium hydride has been studied extensively for applications as a hydrogen storage material owi...
Magnesium hydride owns the largest share of publications on solid materials for hydrogen storage. Th...
Philosophiae Doctor - PhDMagnesium hydride has long been regarded as a promising candidate for light...
Energy systems of the foreseeable future will have to be more reliable, flexible and cost-efficient ...
PhDA systematic investigation of the structural stability, evolution and hydrogenstorage properties...
The discovery of new hydrogen storage materials has greatly driven the entire hydrogen storage techn...
International audienceMagnesium hydride owns the largest share of publications on solid materials fo...
Magnesium hydrides (MgH2) have attracted extensive attention as solid-state H2 storage, owing to the...
Hydrides based on magnesium and intermetallic compounds provide a viable solution to the challenge o...
Demands for zero greenhouse-gas emission vehicles have sharpened with today’s increased focus on glo...
Hydrogen storage technology is vital for the application of hydrogen as an alternative fuel for sust...
Magnesium-based hydrogen storage materials are considered to be one of the most promising solid-stat...
This thesis explores suitable materials for energy stores for stationary applications, specifically ...
Magnesium hydride has been studied extensively for applications as a hydrogen storage material owi...
Magnesium hydride owns the largest share of publications on solid materials for hydrogen storage. Th...
Philosophiae Doctor - PhDMagnesium hydride has long been regarded as a promising candidate for light...
Energy systems of the foreseeable future will have to be more reliable, flexible and cost-efficient ...
PhDA systematic investigation of the structural stability, evolution and hydrogenstorage properties...
The discovery of new hydrogen storage materials has greatly driven the entire hydrogen storage techn...
International audienceMagnesium hydride owns the largest share of publications on solid materials fo...
Magnesium hydrides (MgH2) have attracted extensive attention as solid-state H2 storage, owing to the...
Hydrides based on magnesium and intermetallic compounds provide a viable solution to the challenge o...
Demands for zero greenhouse-gas emission vehicles have sharpened with today’s increased focus on glo...
Hydrogen storage technology is vital for the application of hydrogen as an alternative fuel for sust...
Magnesium-based hydrogen storage materials are considered to be one of the most promising solid-stat...
This thesis explores suitable materials for energy stores for stationary applications, specifically ...