Lithium borohydride (LiBH4) has been attracting extensive attention as an exemplary high‐capacity complex hydride for solid‐state hydrogen storage applications because of its high hydrogen capacities (18.5 wt% and 121 kg H2 m−3). However, the strong and highly directional covalent and ionic bonds within LiBH4 structure induce high desorption temperatures, slow kinetics, and poor reversibility, which make large‐scale application impractical. To improve its hydrogen cycling performance, several strategies including cation/anion substitution, catalyst doping, reactive compositing, and nanoengineering, have been developed to tailor the thermodynamics and kinetics of hydrogen storage process. For example, largely reduced operation temperatures a...
In an effort to develop reversible metal borohydrides with high hydrogen storage capacities and low ...
The hydrogen storage properties of 6Mg(NH2)2e9LiH-x(LiBH4) (x= 0, 0.5, 1, 2) system and the role of...
The development of new practical hydrogen storage materials with high volumetric and gravimetric hyd...
Borohydrides such as LiBH{sub 4} have been studied as candidates for hydrogen storage because of the...
In this work, we report an effective synthetic strategy to obtain LiBH4 featuring low-temperature an...
Hydrogen technology has become essential to fulfill our mobile and stationary energy needs in a glob...
Hydrogen technology has become essential to fulfill our mobile and stationary energy needs in a glob...
LiBH4, a potential hydrogen storage material with the highest reversible capacity for vehicle applic...
LiBH4, a potential hydrogen storage material with the highest reversible capacity for vehicle applic...
LiBH4, a potential hydrogen storage material with the highest reversible capacity for vehicle applic...
Lithium borohydride (LiBH4) exhibits poor hydrogen storage reversibility because of phase separation...
PhDThe primary aim of this project was the development of an inorganic Lithium borohydride (LiBH4)-b...
Light weight metal borohydrides (i.e. LiBH4, NaBH4, Mg(BH4)2 and Ca(BH4)2) are believed to be promis...
First-principles calculation and x-ray diffraction simulation methods have been used to explore crys...
In an effort to develop reversible metal borohydrides with high hydrogen storage capacities and low ...
In an effort to develop reversible metal borohydrides with high hydrogen storage capacities and low ...
The hydrogen storage properties of 6Mg(NH2)2e9LiH-x(LiBH4) (x= 0, 0.5, 1, 2) system and the role of...
The development of new practical hydrogen storage materials with high volumetric and gravimetric hyd...
Borohydrides such as LiBH{sub 4} have been studied as candidates for hydrogen storage because of the...
In this work, we report an effective synthetic strategy to obtain LiBH4 featuring low-temperature an...
Hydrogen technology has become essential to fulfill our mobile and stationary energy needs in a glob...
Hydrogen technology has become essential to fulfill our mobile and stationary energy needs in a glob...
LiBH4, a potential hydrogen storage material with the highest reversible capacity for vehicle applic...
LiBH4, a potential hydrogen storage material with the highest reversible capacity for vehicle applic...
LiBH4, a potential hydrogen storage material with the highest reversible capacity for vehicle applic...
Lithium borohydride (LiBH4) exhibits poor hydrogen storage reversibility because of phase separation...
PhDThe primary aim of this project was the development of an inorganic Lithium borohydride (LiBH4)-b...
Light weight metal borohydrides (i.e. LiBH4, NaBH4, Mg(BH4)2 and Ca(BH4)2) are believed to be promis...
First-principles calculation and x-ray diffraction simulation methods have been used to explore crys...
In an effort to develop reversible metal borohydrides with high hydrogen storage capacities and low ...
In an effort to develop reversible metal borohydrides with high hydrogen storage capacities and low ...
The hydrogen storage properties of 6Mg(NH2)2e9LiH-x(LiBH4) (x= 0, 0.5, 1, 2) system and the role of...
The development of new practical hydrogen storage materials with high volumetric and gravimetric hyd...