The effects of various catalysts on the hydrogen release characteristics of LiAlH4 were studied. The catalysts were incorporated into the alanate by ball milling. The catalysts studied included elemental titanium, TiH2, TiCl4, TiCl3, AlCl3, FeCl3, elemental iron, elemental nickel, elemental vanadium, and carbon black. Dehydriding/rehydriding properties were characterized by using differential scanning calorimetry coupled with pressure measurement and X-ray diffraction. The addition of TiCl3 and TiCl4 to LiA1H(4) eliminated the first step of hydrogen evolution and significantly lowered decomposition temperature of the second step. Doping with elemental iron caused only a slight decrease in the amount of hydrogen released and did not eliminat...
The effects of metal oxide nanopowder (Fe2O3, Cr2O3, ZnO and MoO3) additions by dry ball milling on ...
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...
In the present work, the catalytic effect of TiF3 on the dehydrogenation properties of LiAlH4 has be...
The high catalytic activities of TiCl4 and TiCl3 on the hydrogen storage properties of alkali metal ...
The effects of K2TiF6 on the dehydrogenation properties of LiAlH4 were investigated by solid-state b...
The hydrogen desorption/absorption behaviors of LiAlH4/LiBH4 with a focus on the effects of catalyst...
To investigate the effect of NiCl2 dopant and doping processes on the dehydrogenation behavior of Li...
The effects of various catalysts on the H2 release characteristics of LiAlH4 were studied. It was es...
The effects of various catalysts on the H2 release characteristics of LiAlH4 were studied. It was es...
The effects of various catalysts on the H2 release characteristics of LiAlH4 were studied. It was es...
The effects of various catalysts on the H2 release characteristics of LiAlH4 were studied. It was es...
The effects of TiO2 nanopowder addition on the dehydrogenation behaviour of LiAlH4 have been studied...
The dehydrogenation properties of LiAlH4 doped with different Ti precursors (Ti, TiO2, and TiCl3) vi...
The effects of metal oxide nanopowder (Fe2O3, Cr2O3, ZnO and MoO3) additions by dry ball milling on ...
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...
In the present work, the catalytic effect of TiF3 on the dehydrogenation properties of LiAlH4 has be...
The high catalytic activities of TiCl4 and TiCl3 on the hydrogen storage properties of alkali metal ...
The effects of K2TiF6 on the dehydrogenation properties of LiAlH4 were investigated by solid-state b...
The hydrogen desorption/absorption behaviors of LiAlH4/LiBH4 with a focus on the effects of catalyst...
To investigate the effect of NiCl2 dopant and doping processes on the dehydrogenation behavior of Li...
The effects of various catalysts on the H2 release characteristics of LiAlH4 were studied. It was es...
The effects of various catalysts on the H2 release characteristics of LiAlH4 were studied. It was es...
The effects of various catalysts on the H2 release characteristics of LiAlH4 were studied. It was es...
The effects of various catalysts on the H2 release characteristics of LiAlH4 were studied. It was es...
The effects of TiO2 nanopowder addition on the dehydrogenation behaviour of LiAlH4 have been studied...
The dehydrogenation properties of LiAlH4 doped with different Ti precursors (Ti, TiO2, and TiCl3) vi...
The effects of metal oxide nanopowder (Fe2O3, Cr2O3, ZnO and MoO3) additions by dry ball milling on ...
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...