As the world is running out of fossil fuels, sustainable energy sources and efficient forms of energy storage are studied nowadays. Hydrogen is an energy carrier and has advantages that it is abundant and does not pollute the environment. Metal hydrides are studied for their reversible hydrogen storage properties. MgH2 is a promising candidate for light-weight hydrogen storage material. It can store up to 7.7 wt-% of hydrogen. However, it suffers from high thermodynamic stability and poor sorption kinetics. To improve its performance, Mg is doped with transition metals (TM). The resulting complex alloys are not fully understood on an atomistic level. This doctoral dissertation therefore examines the following central research questions: Is ...
Magnesium transition-metal alloys have a high hydrogen-storage capacity and show improved hydrogen-u...
Magnesium transition-metal alloys have a high hydrogen-storage capacity and show improved hydrogen-u...
Nanostructured magnesium titanium alloys are interesting lightweight materials for chemical hydrogen...
Magnesium transition-metal alloys have a high hydrogen-storage capacity and show improved hydrogen-u...
Magnesium transition-metal alloys are a novel class of light-weight hydrogen-storage materials. We h...
Magnesium transition-metal alloys are a novel class of light-weight hydrogen-storage materials. We h...
Magnesium transition-metal alloys are a novel class of light-weight hydrogen-storage materials. We h...
Magnesium transition-metal alloys are a novel class of light-weight hydrogen-storage materials. We h...
Magnesium transition-metal alloys are a novel class of light-weight hydrogen-storage materials. We h...
Magnesium transition-metal alloys are a novel class of light-weight hydrogen-storage materials. We h...
Magnesium transition-metal alloys are a novel class of light-weight hydrogen-storage materials. We h...
Magnesium transition-metal alloys are a novel class of light-weight hydrogen-storage materials. We h...
Magnesium transition-metal alloys have a high hydrogen-storage capacity and show improved hydrogen-u...
Magnesium transition-metal alloys have a high hydrogen-storage capacity and show improved hydrogen-u...
Magnesium transition-metal alloys have a high hydrogen-storage capacity and show improved hydrogen-u...
Magnesium transition-metal alloys have a high hydrogen-storage capacity and show improved hydrogen-u...
Magnesium transition-metal alloys have a high hydrogen-storage capacity and show improved hydrogen-u...
Nanostructured magnesium titanium alloys are interesting lightweight materials for chemical hydrogen...
Magnesium transition-metal alloys have a high hydrogen-storage capacity and show improved hydrogen-u...
Magnesium transition-metal alloys are a novel class of light-weight hydrogen-storage materials. We h...
Magnesium transition-metal alloys are a novel class of light-weight hydrogen-storage materials. We h...
Magnesium transition-metal alloys are a novel class of light-weight hydrogen-storage materials. We h...
Magnesium transition-metal alloys are a novel class of light-weight hydrogen-storage materials. We h...
Magnesium transition-metal alloys are a novel class of light-weight hydrogen-storage materials. We h...
Magnesium transition-metal alloys are a novel class of light-weight hydrogen-storage materials. We h...
Magnesium transition-metal alloys are a novel class of light-weight hydrogen-storage materials. We h...
Magnesium transition-metal alloys are a novel class of light-weight hydrogen-storage materials. We h...
Magnesium transition-metal alloys have a high hydrogen-storage capacity and show improved hydrogen-u...
Magnesium transition-metal alloys have a high hydrogen-storage capacity and show improved hydrogen-u...
Magnesium transition-metal alloys have a high hydrogen-storage capacity and show improved hydrogen-u...
Magnesium transition-metal alloys have a high hydrogen-storage capacity and show improved hydrogen-u...
Magnesium transition-metal alloys have a high hydrogen-storage capacity and show improved hydrogen-u...
Nanostructured magnesium titanium alloys are interesting lightweight materials for chemical hydrogen...