In an effort to develop reversible metal borohydrides with high hydrogen storage capacities and low dehydriding temperature, doping LiBH4 with various metal halides and hydrides has been conducted. Several metal halides such as TiCl3, TiF3, and ZnF2 effectively reduced the dehydriding temperature through a cation exchange interaction. Some of the halide doped LiBH4 are partially reversible. The LiBH4 + 0.1TiF3 desorbed 3.5 wt % and 8.5 wt % hydrogen at 150 and 450 °C, respectively, with subsequent reabsorption of 6 wt % hydrogen at 500 °C and 70 bar observed. XRD and NMR analysis of the rehydrided samples confirmed the reformation of LiBH4. The existence of the (B12H12)−2 species in dehydrided and rehydrided samples gives insight into the r...
LiBH<sub>4</sub> is one of the most potential candidates for hydrogen storage materials among severa...
Lithium borohydride (LiBH4) has been shown great interest as a hydrogen storage material owing to it...
Hydrogen is regarded as a promising energy carrier for the current and future energetic and environm...
In an effort to develop reversible metal borohydrides with high hydrogen storage capacities and low ...
In effort to develop reversible metallic borohydrides with high hydrogen storage capacity and low de...
Borohydrides such as LiBH{sub 4} have been studied as candidates for hydrogen storage because of the...
In attempt to develop lithium borohydrides as the reversible hydrogen storage materials with the hig...
This paper reports the results in the effort to destabilize lithium borohydride for reversible hydro...
Lithium borohydride has a high reversible hydrogen storage capacity. For its practical use as an on-...
PhDThe primary aim of this project was the development of an inorganic Lithium borohydride (LiBH4)-b...
Lithium borohydride (LiBH4) has been attracting extensive attention as an exemplary high‐capacity co...
Lightweight complex hydrides, M(BH4)n (M = Li, Na, Mg, and Ca; n = 1 for Li and Na, n = 2 for Mg and...
Lightweight complex hydrides, M(BH4)n (M = Li, Na, Mg, and Ca; n = 1 for Li and Na, n = 2 for Mg and...
Boric acid effectively promotes the dehydrogenation of lithium borohydride due to the interactions b...
A series of mixtures of LiAB/LiBH4 with different molar ratios were prepared and their hydrogen stor...
LiBH<sub>4</sub> is one of the most potential candidates for hydrogen storage materials among severa...
Lithium borohydride (LiBH4) has been shown great interest as a hydrogen storage material owing to it...
Hydrogen is regarded as a promising energy carrier for the current and future energetic and environm...
In an effort to develop reversible metal borohydrides with high hydrogen storage capacities and low ...
In effort to develop reversible metallic borohydrides with high hydrogen storage capacity and low de...
Borohydrides such as LiBH{sub 4} have been studied as candidates for hydrogen storage because of the...
In attempt to develop lithium borohydrides as the reversible hydrogen storage materials with the hig...
This paper reports the results in the effort to destabilize lithium borohydride for reversible hydro...
Lithium borohydride has a high reversible hydrogen storage capacity. For its practical use as an on-...
PhDThe primary aim of this project was the development of an inorganic Lithium borohydride (LiBH4)-b...
Lithium borohydride (LiBH4) has been attracting extensive attention as an exemplary high‐capacity co...
Lightweight complex hydrides, M(BH4)n (M = Li, Na, Mg, and Ca; n = 1 for Li and Na, n = 2 for Mg and...
Lightweight complex hydrides, M(BH4)n (M = Li, Na, Mg, and Ca; n = 1 for Li and Na, n = 2 for Mg and...
Boric acid effectively promotes the dehydrogenation of lithium borohydride due to the interactions b...
A series of mixtures of LiAB/LiBH4 with different molar ratios were prepared and their hydrogen stor...
LiBH<sub>4</sub> is one of the most potential candidates for hydrogen storage materials among severa...
Lithium borohydride (LiBH4) has been shown great interest as a hydrogen storage material owing to it...
Hydrogen is regarded as a promising energy carrier for the current and future energetic and environm...