In this work, we investigated the influence of the K2Mn(NH2)(4) additive on the hydrogen sorption properties of the Mg(NH2)(2) + 2LiH (Li-Mg-N-H) system. The addition of 5 mol% of K2Mn(NH2)(4) to the Li-Mg-N-H system leads to a decrease of the dehydrogenation peak temperature from 200 degrees C to 172 degrees C compared to the pristine sample. This sample exhibits a constant hydrogen storage capacity of 4.2 wt.% over 25 dehydrogenation/rehydrogenation cycles. Besides that, the in-situ synchrotron powder X-ray diffraction analysis performed on the as prepared Mg(NH2)(2) + 2LiH containing K2Mn(NH2)(4) indicates the presence of Mn4N. However, no crystalline K-containing phases were detected. Upon dehydrogenation, the formation of KH is observe...
The Mg(NH2)(2)-2LiH composite is a promising hydrogen storage material due to its relatively high re...
Reactive hydride composites are good candidates for solid hydrogen storage due to their high gravime...
Considerable effort has been devoted to the M-N-H system for solid-state hydrogen storage. However, ...
In this work, we investigated the influence of the K2Mn(NH2)4 additive on the hydrogen sorption prop...
Doping Mg(NH2)(2)-2LiH by Mg-2(BH4)(2)(NH2)(2) compound exhibits enhanced hydrogen de/re-hydrogenati...
The Li-Mg-N-H system was prepared by reacting magnesium amide [Mg(NH2)2] with lithium nitride (Li3N)...
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...
Metal hydrides have been studied as a promising solution for the hydrogen recovery from gas mixtures...
The effect of Li3N additive on the Li-Mg-N-H system was examined with respect to the reversible dehy...
LiBH4 is an effective additive in enhancing hydrogen desorption and absorption properties for the 2L...
The Mg(NH2)(2)-2LiH composite is a promising on-board hydrogen storage material due to its high reve...
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 Mg(NH2)(2)-2LiH composite is a promising hydrogen storage material due to its relatively high re...
Reactive hydride composites are good candidates for solid hydrogen storage due to their high gravime...
Considerable effort has been devoted to the M-N-H system for solid-state hydrogen storage. However, ...
In this work, we investigated the influence of the K2Mn(NH2)4 additive on the hydrogen sorption prop...
Doping Mg(NH2)(2)-2LiH by Mg-2(BH4)(2)(NH2)(2) compound exhibits enhanced hydrogen de/re-hydrogenati...
The Li-Mg-N-H system was prepared by reacting magnesium amide [Mg(NH2)2] with lithium nitride (Li3N)...
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...
Metal hydrides have been studied as a promising solution for the hydrogen recovery from gas mixtures...
The effect of Li3N additive on the Li-Mg-N-H system was examined with respect to the reversible dehy...
LiBH4 is an effective additive in enhancing hydrogen desorption and absorption properties for the 2L...
The Mg(NH2)(2)-2LiH composite is a promising on-board hydrogen storage material due to its high reve...
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 Mg(NH2)(2)-2LiH composite is a promising hydrogen storage material due to its relatively high re...
Reactive hydride composites are good candidates for solid hydrogen storage due to their high gravime...
Considerable effort has been devoted to the M-N-H system for solid-state hydrogen storage. However, ...