The Mg(NH2)(2)-2LiH composite is a promising on-board hydrogen storage material due to its high reversible hydrogen capacity and suitable thermodynamic properties. However, the severe kinetic barrier inhibits its low temperature operation. In the present work, the additive effects of lithium halides on the Mg(NH2)(2)-2LiH system were studied systematically. Experimental results showed that, among all those lithium halides, the LiBr doped Mg(NH2)(2)-2LiH composite exhibited the best dehydrogenation performance. The hydrogen sorption and desorption rates of the Mg(NH2)(2)-2LiH-0.2LiBr sample are similar to 3 and 2 times, respectively, faster than that of the pristine sample at 140 degrees C. At the same time, enhanced kinetics for hydrogen de...
The doping effect of Sr(OH)(2) on the Mg(NH2)(2)-2LiH system is investigated considering different a...
A strategy for thermodynamic improvement of 2Mg(NH2)(2)-3LiH composite via "stabilizing" the dehydro...
The effects of different transition metal halides (TiCl{sub 3}, VCl{sub 3}, ScCl{sub 3} and NiCl{sub...
The Mg(NH2)(2)-2LiH composite is a promising hydrogen storage material due to its relatively high re...
Doping Mg(NH2)(2)-2LiH by Mg-2(BH4)(2)(NH2)(2) compound exhibits enhanced hydrogen de/re-hydrogenati...
Recent investigations showed the formation of new amide-chloride phases between LiNH2 and AlCl3 afte...
Lithium fast-ion conductors have shown positive effects on the hydrogen storage properties of the Li...
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...
Li-Mg-N-H systems composed of Mg(NH2)2 and LiH with various ratios can reversibly store a large amou...
Doping with additives in a Li-Mg-N-H system has been regarded as one of the most effective methods o...
Unfavourable stability and sluggish de/re-hydrogenation kinetics hamper the application of MgH(2) as...
LiBH4 is an effective additive in enhancing hydrogen desorption and absorption properties for the 2L...
Various synthesis and rehydrogenation processes of lithium hydride (LiH) and magnesium amide (Mg(NH2...
Various synthesis and rehydrogenation processes of lithium hydride (LiH) and magnesium amide (Mg(NH2...
The doping effect of Sr(OH)(2) on the Mg(NH2)(2)-2LiH system is investigated considering different a...
A strategy for thermodynamic improvement of 2Mg(NH2)(2)-3LiH composite via "stabilizing" the dehydro...
The effects of different transition metal halides (TiCl{sub 3}, VCl{sub 3}, ScCl{sub 3} and NiCl{sub...
The Mg(NH2)(2)-2LiH composite is a promising hydrogen storage material due to its relatively high re...
Doping Mg(NH2)(2)-2LiH by Mg-2(BH4)(2)(NH2)(2) compound exhibits enhanced hydrogen de/re-hydrogenati...
Recent investigations showed the formation of new amide-chloride phases between LiNH2 and AlCl3 afte...
Lithium fast-ion conductors have shown positive effects on the hydrogen storage properties of the Li...
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...
Li-Mg-N-H systems composed of Mg(NH2)2 and LiH with various ratios can reversibly store a large amou...
Doping with additives in a Li-Mg-N-H system has been regarded as one of the most effective methods o...
Unfavourable stability and sluggish de/re-hydrogenation kinetics hamper the application of MgH(2) as...
LiBH4 is an effective additive in enhancing hydrogen desorption and absorption properties for the 2L...
Various synthesis and rehydrogenation processes of lithium hydride (LiH) and magnesium amide (Mg(NH2...
Various synthesis and rehydrogenation processes of lithium hydride (LiH) and magnesium amide (Mg(NH2...
The doping effect of Sr(OH)(2) on the Mg(NH2)(2)-2LiH system is investigated considering different a...
A strategy for thermodynamic improvement of 2Mg(NH2)(2)-3LiH composite via "stabilizing" the dehydro...
The effects of different transition metal halides (TiCl{sub 3}, VCl{sub 3}, ScCl{sub 3} and NiCl{sub...