Reaction kinetic behaviour and cycling stability of the 2LiBH4-MgH2 reactive hydride composite (Li-RHC) are experimentally determined and analysed as a basis for the design and development of hydrogen storage tanks. In addition to the determination and discussion about the properties; different measurement methods are applied and compared. The activation energies for both hydrogenation and dehydrogenation are determined by the Kissinger method and via the fitting of solid-state reaction kinetic models to isothermal volumetric measurements. Furthermore, the hydrogen absorption-desorption cycling stability is assessed by titration measurements. Finally, the kinetic behaviour and the reversible hydrogen storage capacity of the Li-RHC are discu...
The LithiumeBoron Reactive Hydride Composite System (Li-RHC) (2 LiH þ MgB2/2 LiBH4- þ MgH2) is a hig...
LiBH4 is a promising material to store hydrogen because of its interesting characteristics. It has h...
Borohydrides are promising materials for safe and efficient solid state hydrogen storage application...
Reaction kinetic behaviour and cycling stability of the 2LiBH4–MgH2 reactive hydride composite (Li-R...
Reaction kinetic behaviour and cycling stability of the 2LiBH4-MgH2 reactive hydride composite (Li-R...
Thermodynamic and heat transfer properties of the 2LiBH4-MgH2 composite (Li-RHC) system are experime...
Thermodynamic and heat transfer properties of the 2LiBH4-MgH2 composite (Li-RHC) system are experime...
The LiBH4 – MgH2 system is of particular interest among the reactive hydride composites due to its h...
The discovery of the reversible hydrogenation reaction of MgH2-borohydride based Reactive Hydride Co...
The practical application of hydrogen as new energy vector presents several problems that have not b...
The Lithium–Boron Reactive Hydride Composite System (Li-RHC) (2 LiH + MgB2/2 LiBH4 + MgH2) is a high...
The Lithium–Boron Reactive Hydride Composite System (Li-RHC) (2 LiH + MgB2/2 LiBH4 + MgH2) is a high...
In this work, Reactive Hydride Composites of light-metal hydrides for hydrogen storage applications ...
The Mg10YNi alloy was hydrogenated and then coupled with LiBH4 to form LiBH4/Mg10YNi-H reactive hydr...
Reversible solid-state hydrogen storage is one of the key technologies toward pollutant-free and sus...
The LithiumeBoron Reactive Hydride Composite System (Li-RHC) (2 LiH þ MgB2/2 LiBH4- þ MgH2) is a hig...
LiBH4 is a promising material to store hydrogen because of its interesting characteristics. It has h...
Borohydrides are promising materials for safe and efficient solid state hydrogen storage application...
Reaction kinetic behaviour and cycling stability of the 2LiBH4–MgH2 reactive hydride composite (Li-R...
Reaction kinetic behaviour and cycling stability of the 2LiBH4-MgH2 reactive hydride composite (Li-R...
Thermodynamic and heat transfer properties of the 2LiBH4-MgH2 composite (Li-RHC) system are experime...
Thermodynamic and heat transfer properties of the 2LiBH4-MgH2 composite (Li-RHC) system are experime...
The LiBH4 – MgH2 system is of particular interest among the reactive hydride composites due to its h...
The discovery of the reversible hydrogenation reaction of MgH2-borohydride based Reactive Hydride Co...
The practical application of hydrogen as new energy vector presents several problems that have not b...
The Lithium–Boron Reactive Hydride Composite System (Li-RHC) (2 LiH + MgB2/2 LiBH4 + MgH2) is a high...
The Lithium–Boron Reactive Hydride Composite System (Li-RHC) (2 LiH + MgB2/2 LiBH4 + MgH2) is a high...
In this work, Reactive Hydride Composites of light-metal hydrides for hydrogen storage applications ...
The Mg10YNi alloy was hydrogenated and then coupled with LiBH4 to form LiBH4/Mg10YNi-H reactive hydr...
Reversible solid-state hydrogen storage is one of the key technologies toward pollutant-free and sus...
The LithiumeBoron Reactive Hydride Composite System (Li-RHC) (2 LiH þ MgB2/2 LiBH4- þ MgH2) is a hig...
LiBH4 is a promising material to store hydrogen because of its interesting characteristics. It has h...
Borohydrides are promising materials for safe and efficient solid state hydrogen storage application...