In this work, the hydrogen sorption properties of the LiBH4–Mg2NiH4 composite system with the molar ratio 2:2.5 were thoroughly investigated as a function of the applied temperature and hydrogen pressure. To the best of our knowledge, it has been possible to prove experimentally the mutual destabilization between LiBH4 and Mg2NiH4. A detailed account of the kinetic and thermodynamic features of the dehydrogenation process is reported here
LiBH<sub>4</sub> is one of the most potential candidates for hydrogen storage materials among severa...
In the last 20 years enormous efforts have been devoted to the research and development of materials...
A novel combined hydrogen storage system LiBH4/[C(NH2)3]+[BH4]− (GBH) complexes were reported. By a ...
In the last 20 years, enormous efforts have been devoted to the research and development of material...
It has been shown that lithium borohydride can be destabilized with magnesium hydride additions for ...
LiBH4 is a promising material to store hydrogen because of its interesting characteristics. It has h...
Solid state chemical storage of hydrogen in metals offers promising advantages over compressed hydro...
In the last 20 years, enormous efforts have been devoted to the research and development of material...
International audienceJoint decomposition of hydrides may be energetically favored, if stable mixed ...
The Mg10YNi alloy was hydrogenated and then coupled with LiBH4 to form LiBH4/Mg10YNi-H reactive hydr...
Abstract Lithium amidoborane (LiAB) is known as an efficient hydrogen storage material. The dehydrog...
The system Ca(BH4)2-Mg2NiH4 is used as a model to prove the unique possibility to fully reverse the ...
The system Ca(BH4)2-Mg2NiH4 is used as a model to prove the unique possibility to fully reverse the ...
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...
LiBH<sub>4</sub> is one of the most potential candidates for hydrogen storage materials among severa...
In the last 20 years enormous efforts have been devoted to the research and development of materials...
A novel combined hydrogen storage system LiBH4/[C(NH2)3]+[BH4]− (GBH) complexes were reported. By a ...
In the last 20 years, enormous efforts have been devoted to the research and development of material...
It has been shown that lithium borohydride can be destabilized with magnesium hydride additions for ...
LiBH4 is a promising material to store hydrogen because of its interesting characteristics. It has h...
Solid state chemical storage of hydrogen in metals offers promising advantages over compressed hydro...
In the last 20 years, enormous efforts have been devoted to the research and development of material...
International audienceJoint decomposition of hydrides may be energetically favored, if stable mixed ...
The Mg10YNi alloy was hydrogenated and then coupled with LiBH4 to form LiBH4/Mg10YNi-H reactive hydr...
Abstract Lithium amidoborane (LiAB) is known as an efficient hydrogen storage material. The dehydrog...
The system Ca(BH4)2-Mg2NiH4 is used as a model to prove the unique possibility to fully reverse the ...
The system Ca(BH4)2-Mg2NiH4 is used as a model to prove the unique possibility to fully reverse the ...
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...
LiBH<sub>4</sub> is one of the most potential candidates for hydrogen storage materials among severa...
In the last 20 years enormous efforts have been devoted to the research and development of materials...
A novel combined hydrogen storage system LiBH4/[C(NH2)3]+[BH4]− (GBH) complexes were reported. By a ...