Complex metal hydrides are attracting much attention as a class of candidate materials for hydrogen storage. Lithium-based complex hydrides, including lithium aluminum hydrides (LiAlH_4 and Li_3AlH_6), are among the most promising materials, owing to their high hydrogen contents. In the present work, we investigated the dehydrogenation/rehydrogenation reactions of a combined system of Li_3AlH_6 and Mg(NH_2)_2, which has a theoretical hydrogen capacity of 6.5 wt %. Thermogravimetric analysis of hydrogenated 2/3Al−Li_2Mg(NH)2 (doped with 4 wt % TiCl_3) indicated that a large amount of hydrogen (∼6.2 wt %) can be stored under 300 °C and 172 bar of hydrogen pressure. The FT-IR and NMR results showed that the reaction between Li_3AlH_6 and Mg(NH...
The Li-Mg-N-H system was prepared by reacting magnesium amide [Mg(NH2)2] with lithium nitride (Li3N)...
To improve the dehydrogenation properties of MgH2, a novel hydrogen storage system, MgH2-Li3AlH6, is...
Recent investigations showed the formation of new amide-chloride phases between LiNH2 and AlCl3 afte...
Complex metal hydrides are attracting much attention as a class of candidate materials for hydrogen ...
Reversible dehydrogenation and hydrogenation reactions have been reported for a number of reactions ...
The lithium amide–lithium hydride system (LiNH2–LiH) is one of the most attractive light-weight mate...
The Interactions between N-H contenting chemicals and hydrides produce hydrogen. 1 Such strong inter...
The practical application of hydrogen storage in fuel cells for transportation purposes in hydrogen ...
The practical application of hydrogen storage in fuel cells for transportation purposes in hydrogen ...
The practical application of hydrogen storage in fuel cells for transportation purposes in hydrogen ...
The Interactions between N-H contenting chemicals and hydrides produce hydrogen. Such strong interac...
Doping with additives in a Li-Mg-N-H system has been regarded as one of the most effective methods o...
To improve the dehydrogenation properties of MgH2, a novel hydrogen storage system, MgH2-Li3AlH6, is...
Li-Mg-N-H systems composed of Mg(NH2)2 and LiH with various ratios can reversibly store a large amou...
Li-Mg-N-H systems composed of Mg(NH2)2 and LiH with various ratios can reversibly store a large amou...
The Li-Mg-N-H system was prepared by reacting magnesium amide [Mg(NH2)2] with lithium nitride (Li3N)...
To improve the dehydrogenation properties of MgH2, a novel hydrogen storage system, MgH2-Li3AlH6, is...
Recent investigations showed the formation of new amide-chloride phases between LiNH2 and AlCl3 afte...
Complex metal hydrides are attracting much attention as a class of candidate materials for hydrogen ...
Reversible dehydrogenation and hydrogenation reactions have been reported for a number of reactions ...
The lithium amide–lithium hydride system (LiNH2–LiH) is one of the most attractive light-weight mate...
The Interactions between N-H contenting chemicals and hydrides produce hydrogen. 1 Such strong inter...
The practical application of hydrogen storage in fuel cells for transportation purposes in hydrogen ...
The practical application of hydrogen storage in fuel cells for transportation purposes in hydrogen ...
The practical application of hydrogen storage in fuel cells for transportation purposes in hydrogen ...
The Interactions between N-H contenting chemicals and hydrides produce hydrogen. Such strong interac...
Doping with additives in a Li-Mg-N-H system has been regarded as one of the most effective methods o...
To improve the dehydrogenation properties of MgH2, a novel hydrogen storage system, MgH2-Li3AlH6, is...
Li-Mg-N-H systems composed of Mg(NH2)2 and LiH with various ratios can reversibly store a large amou...
Li-Mg-N-H systems composed of Mg(NH2)2 and LiH with various ratios can reversibly store a large amou...
The Li-Mg-N-H system was prepared by reacting magnesium amide [Mg(NH2)2] with lithium nitride (Li3N)...
To improve the dehydrogenation properties of MgH2, a novel hydrogen storage system, MgH2-Li3AlH6, is...
Recent investigations showed the formation of new amide-chloride phases between LiNH2 and AlCl3 afte...