LiAl(NH2)(4) is a ternary amide that readily decomposes to release ammonia at temperatures as low as similar to 90 degrees C. Owing to such instability as compared to binary amides, we hypothesize that the dehydrogenation mechanism involving ternary amide-hydride interaction would be significantly different from those of binary metal amide-hydride interaction. Therefore, in this study, interaction of LiAl(NH2)(4) and LiAlH4 has been investigated by means of mechanical milling and thermal method. It was found that dehydrogenation occurred spontaneously during the milling process and the rate of dehydrogenation increased with increasing amount of LiAlH4, suggesting an ion migration mediated dehydrogenation. As reaction progressed, the formati...
1. The exothermic reaction of NaH-NH3BH3 triggers the reaction between the NaNH2BH3 formed and unrea...
Using variable temperature in situ H-1 NMR spectroscopy on a mixture of LiNH2 + LiH that was mechani...
Improving Effects of LiH and Co-Catalyst on the Dehydrogenation of Li4BN3H10Improving effects of LiH...
This paper deals with the possibility of using compounds in the Li-Al-N-H system as hydrogen storage...
Mixtures of metallic amides and LiH are studied as hydrogen storage materials. We show that the amid...
The effects of K2TiF6 on the dehydrogenation properties of LiAlH4 were investigated by solid-state b...
Abstract Lithium amidoborane (LiAB) is known as an efficient hydrogen storage material. The dehydrog...
The effects of various catalysts on the hydrogen release characteristics of LiAlH4 were studied. The...
The Interactions between N-H contenting chemicals and hydrides produce hydrogen. 1 Such strong inter...
The effects of various catalysts on the hydrogen release characteristics of LiAlH4 were studied. The...
To investigate the effect of NiCl2 dopant and doping processes on the dehydrogenation behavior of Li...
In this paper, two LiAlH4-NaNH2 samples with LiAlH4 to NaNH2 molar ratio of 1/2 and 2/1 were investi...
AbstractLarge quantities of hydrogen (H2) are released at ambient temperatures as a result of mechan...
The reactions xLiNH2 + (1 - x)LiBH4 and xNaNH2 + (1 - x)NaBH4 have been investigated and new phases ...
In the present work, the catalytic effect of TiF3 on the dehydrogenation properties of LiAlH4 has be...
1. The exothermic reaction of NaH-NH3BH3 triggers the reaction between the NaNH2BH3 formed and unrea...
Using variable temperature in situ H-1 NMR spectroscopy on a mixture of LiNH2 + LiH that was mechani...
Improving Effects of LiH and Co-Catalyst on the Dehydrogenation of Li4BN3H10Improving effects of LiH...
This paper deals with the possibility of using compounds in the Li-Al-N-H system as hydrogen storage...
Mixtures of metallic amides and LiH are studied as hydrogen storage materials. We show that the amid...
The effects of K2TiF6 on the dehydrogenation properties of LiAlH4 were investigated by solid-state b...
Abstract Lithium amidoborane (LiAB) is known as an efficient hydrogen storage material. The dehydrog...
The effects of various catalysts on the hydrogen release characteristics of LiAlH4 were studied. The...
The Interactions between N-H contenting chemicals and hydrides produce hydrogen. 1 Such strong inter...
The effects of various catalysts on the hydrogen release characteristics of LiAlH4 were studied. The...
To investigate the effect of NiCl2 dopant and doping processes on the dehydrogenation behavior of Li...
In this paper, two LiAlH4-NaNH2 samples with LiAlH4 to NaNH2 molar ratio of 1/2 and 2/1 were investi...
AbstractLarge quantities of hydrogen (H2) are released at ambient temperatures as a result of mechan...
The reactions xLiNH2 + (1 - x)LiBH4 and xNaNH2 + (1 - x)NaBH4 have been investigated and new phases ...
In the present work, the catalytic effect of TiF3 on the dehydrogenation properties of LiAlH4 has be...
1. The exothermic reaction of NaH-NH3BH3 triggers the reaction between the NaNH2BH3 formed and unrea...
Using variable temperature in situ H-1 NMR spectroscopy on a mixture of LiNH2 + LiH that was mechani...
Improving Effects of LiH and Co-Catalyst on the Dehydrogenation of Li4BN3H10Improving effects of LiH...