We tune the thermodynamics of hydrogen absorption in Mg by means of elastic clamping. The loading isotherms measured by hydrogenography show that Mg films covered with Mg-alloy-forming elements, such as Pd and Ni, have hydrogen plateau pressures more than 2 orders of magnitude higher than bulk Mg at the same temperature. An elastic model allows us to interpret the Mg thickness dependence of the hydrogen plateau pressure. Our results suggest an alternative route for the development of new hydrogen storage materials with optimized thermodynamic properties
Mg-Ti alloys have uncommon optical and hydrogen absorbing properties, originating from a “spinodal-l...
Alloying with Si is shown to destabilize the strongly bound hydrides LiH and MgH_2. For the LiH/Si s...
Nanometer-sized Mg hydride clusters may form in a self-organized way by the hydrogenation of a noneq...
We tune the thermodynamics of hydrogen absorption in Mg by means of elastic clamping. The loading is...
Magnesium thin films covered with a layer of Pd absorb hydrogen at much higher pressures than bulk M...
Magnesium thin films covered with a layer of Pd absorb hydrogen at much higher pressures than bulk M...
Hydrogenography is a combinatorial optical thin film technique to study the thermodynamic properties...
The science and technology of hydrogen production from renewable energy, hydrogen sensing and hydrog...
Depleting fossil fuel reserves and growing climate threats urge us towards a sustainable society. Mo...
Energy systems of the foreseeable future will have to be more reliable, flexible and cost-efficient ...
Hydrogen storage technology is vital for the application of hydrogen as an alternative fuel for sust...
The high hydrogen storage capacity of magnesium, coupled with the reversibility of hydrogen absorpti...
The search for technologically and economically viable storage solutions for hydrogen fuel would ben...
The aim of this thesis is to study the thermodynamics of hydrogenation of nanoconfined magnesium wit...
Mg-Ti alloys have uncommon optical and hydrogen absorbing properties, originating from a “spinodal-l...
Alloying with Si is shown to destabilize the strongly bound hydrides LiH and MgH_2. For the LiH/Si s...
Nanometer-sized Mg hydride clusters may form in a self-organized way by the hydrogenation of a noneq...
We tune the thermodynamics of hydrogen absorption in Mg by means of elastic clamping. The loading is...
Magnesium thin films covered with a layer of Pd absorb hydrogen at much higher pressures than bulk M...
Magnesium thin films covered with a layer of Pd absorb hydrogen at much higher pressures than bulk M...
Hydrogenography is a combinatorial optical thin film technique to study the thermodynamic properties...
The science and technology of hydrogen production from renewable energy, hydrogen sensing and hydrog...
Depleting fossil fuel reserves and growing climate threats urge us towards a sustainable society. Mo...
Energy systems of the foreseeable future will have to be more reliable, flexible and cost-efficient ...
Hydrogen storage technology is vital for the application of hydrogen as an alternative fuel for sust...
The high hydrogen storage capacity of magnesium, coupled with the reversibility of hydrogen absorpti...
The search for technologically and economically viable storage solutions for hydrogen fuel would ben...
The aim of this thesis is to study the thermodynamics of hydrogenation of nanoconfined magnesium wit...
Mg-Ti alloys have uncommon optical and hydrogen absorbing properties, originating from a “spinodal-l...
Alloying with Si is shown to destabilize the strongly bound hydrides LiH and MgH_2. For the LiH/Si s...
Nanometer-sized Mg hydride clusters may form in a self-organized way by the hydrogenation of a noneq...