Lithium borohydride (LiBH4) has been shown great interest as a hydrogen storage material owing to its large hydrogen storage capacity of 18.5 wt%, but unfortunately to release the vast majority of the stored hydrogen requires temperatures in excess of 600 °c. To improve the temperature at which LiBH4 decomposes, and to improve its poor reversibility, a process known as thermodynamic tuning can be used. Thermodynamic tuning involves creating new, more favourable reaction pathways and in this work the addition of nickel, silicon, iron and cobalt were investigated. The addition of nickel in the LiBH4:2Ni system was shown to be the most effective in reducing the decomposition temperature to occur below 300 °c while also improving reversibil...
The demands on Hydrogen fuel based technologies is ever increasing for substitution or replacing fos...
Some alkali and alkali-earth metal hydrides and their complex hydrides have very high hydrogen stora...
The Interactions between N-H contenting chemicals and hydrides produce hydrogen. Such strong interac...
Lithium borohydride (LiBH4) has been shown great interest as a hydrogen storage material owing to it...
Borohydrides such as LiBH{sub 4} have been studied as candidates for hydrogen storage because of the...
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 ...
Hydrogen technology has become essential to fulfill our mobile and stationary energy needs in a glob...
Lithium borohydride (LiBH4) has been attracting extensive attention as an exemplary high‐capacity co...
Hydrogen technology has become essential to fulfill our mobile and stationary energy needs in a glob...
Variegated decomposers: The synthesis of the first mixed alkali metal borohydride, which contains li...
Hydrogen is regarded as a promising energy carrier for the current and future energetic and environm...
In attempt to develop lithium borohydrides as the reversible hydrogen storage materials with the hig...
Lithium borohydride has a high reversible hydrogen storage capacity. For its practical use as an on-...
In effort to develop reversible metallic borohydrides with high hydrogen storage capacity and low de...
The demands on Hydrogen fuel based technologies is ever increasing for substitution or replacing fos...
Some alkali and alkali-earth metal hydrides and their complex hydrides have very high hydrogen stora...
The Interactions between N-H contenting chemicals and hydrides produce hydrogen. Such strong interac...
Lithium borohydride (LiBH4) has been shown great interest as a hydrogen storage material owing to it...
Borohydrides such as LiBH{sub 4} have been studied as candidates for hydrogen storage because of the...
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 ...
Hydrogen technology has become essential to fulfill our mobile and stationary energy needs in a glob...
Lithium borohydride (LiBH4) has been attracting extensive attention as an exemplary high‐capacity co...
Hydrogen technology has become essential to fulfill our mobile and stationary energy needs in a glob...
Variegated decomposers: The synthesis of the first mixed alkali metal borohydride, which contains li...
Hydrogen is regarded as a promising energy carrier for the current and future energetic and environm...
In attempt to develop lithium borohydrides as the reversible hydrogen storage materials with the hig...
Lithium borohydride has a high reversible hydrogen storage capacity. For its practical use as an on-...
In effort to develop reversible metallic borohydrides with high hydrogen storage capacity and low de...
The demands on Hydrogen fuel based technologies is ever increasing for substitution or replacing fos...
Some alkali and alkali-earth metal hydrides and their complex hydrides have very high hydrogen stora...
The Interactions between N-H contenting chemicals and hydrides produce hydrogen. Such strong interac...