Lithium aluminum hydride (LiAlH4) is an attractive hydrogen source for fuel cell systems due to its high hydrogen storage capacity and the moderate dehydrogenation conditions. In this contribution, TiCl3- and ZrCl4-doped LiAlH4 powders are prepared and pelletized under different compaction pressures in a uniaxial press. At constant 80 degrees C and a hydrogen partial pressure of 0.1 MPa, the maximal hydrogen release of suchlike LiAlH4 compacts amounts to 6.64 wt.%-H-2 (gravimetric capacity) and 53.88 g-H-2 l(-1) (volumetric capacity). The hydrogen release properties of the doped LiAlH4 compacts are studied systematically under variation of the compaction pressure, temperature and hydrogen partial pressure. Furthermore, the volume change of ...
Lithium borohydride has a high reversible hydrogen storage capacity. For its practical use as an on-...
Lithium aluminum hydride (LiAlH4) is an interesting high capacity hydrogen storage material with fas...
The hydrogen desorption/absorption behaviors of LiAlH4/LiBH4 with a focus on the effects of catalyst...
Hydrogen is an efficient, carbon-free and safe energy carrier. However, its compact and weight-effic...
Hydrogen is an efficient, carbon-free and safe energy carrier. However, its compact and weight-effic...
The effects of K2TiF6 on the dehydrogenation properties of LiAlH4 were investigated by solid-state b...
Alkali metal aluminohydrides have high potential as solid hydrogen storage materials. They have been...
The effects of various catalysts on the hydrogen release characteristics of LiAlH4 were studied. The...
Alkali metal aluminohydrides have high potential as solid hydrogen storage materials. They have been...
Alkali metal aluminohydrides have high potential as solid hydrogen storage materials. They have been...
The effects of various catalysts on the hydrogen release characteristics of LiAlH4 were studied. The...
Lithium aluminium hydride (LiAlH4) is a promising hydrogen storage material with a storage capacity ...
Abstract Lithium amidoborane (LiAB) is known as an efficient hydrogen storage material. The dehydrog...
In the present work, the catalytic effect of TiF3 on the dehydrogenation properties of LiAlH4 has be...
Despite the application of lithium aluminium hydride (LiAlH4) being hindered by its sluggish desorpt...
Lithium borohydride has a high reversible hydrogen storage capacity. For its practical use as an on-...
Lithium aluminum hydride (LiAlH4) is an interesting high capacity hydrogen storage material with fas...
The hydrogen desorption/absorption behaviors of LiAlH4/LiBH4 with a focus on the effects of catalyst...
Hydrogen is an efficient, carbon-free and safe energy carrier. However, its compact and weight-effic...
Hydrogen is an efficient, carbon-free and safe energy carrier. However, its compact and weight-effic...
The effects of K2TiF6 on the dehydrogenation properties of LiAlH4 were investigated by solid-state b...
Alkali metal aluminohydrides have high potential as solid hydrogen storage materials. They have been...
The effects of various catalysts on the hydrogen release characteristics of LiAlH4 were studied. The...
Alkali metal aluminohydrides have high potential as solid hydrogen storage materials. They have been...
Alkali metal aluminohydrides have high potential as solid hydrogen storage materials. They have been...
The effects of various catalysts on the hydrogen release characteristics of LiAlH4 were studied. The...
Lithium aluminium hydride (LiAlH4) is a promising hydrogen storage material with a storage capacity ...
Abstract Lithium amidoborane (LiAB) is known as an efficient hydrogen storage material. The dehydrog...
In the present work, the catalytic effect of TiF3 on the dehydrogenation properties of LiAlH4 has be...
Despite the application of lithium aluminium hydride (LiAlH4) being hindered by its sluggish desorpt...
Lithium borohydride has a high reversible hydrogen storage capacity. For its practical use as an on-...
Lithium aluminum hydride (LiAlH4) is an interesting high capacity hydrogen storage material with fas...
The hydrogen desorption/absorption behaviors of LiAlH4/LiBH4 with a focus on the effects of catalyst...