Publication | Open Access
Hydrogen storage in Mg<sub>2</sub>Ni(Fe)H<sub>4</sub>nano particles synthesized from coarse-grained Mg and nano sized Ni(Fe) precursor
13
Citations
34
References
2018
Year
In this work, Mg<sub>2</sub>Ni(Fe)H<sub>4</sub> was synthesized using precursors of nano Ni(Fe) composite powder prepared through arc plasma method and coarse-grained Mg powder. The microstructure, composition, phase components and the hydrogen storage properties of the Mg-Ni(Fe) composite were carefully investigated. It is observed that the Mg<sub>2</sub>Ni(Fe)H<sub>4</sub> particles formed from the Mg-Ni(Fe) composite have a diameter of 100-240 nm and a portion of Fe in the Ni(Fe) nano particles transformed into α-Fe nano particles with the diameter of 40-120 nm. DSC measurements showed that the peak desorption temperature of the Mg<sub>2</sub>Ni(Fe)H<sub>4</sub> was reduced to 501 K and the apparent activation energy for hydrogen desorption of the Mg<sub>2</sub>Ni(Fe)H<sub>4</sub> was 97.2 kJ mol<sup>-1</sup> H<sub>2</sub>. The formation enthalpy of Mg<sub>2</sub>Ni(Fe)H<sub>4</sub> was measured to be -53.1 kJ mol<sup>-1</sup> H<sub>2</sub>. The improvements in hydrogen sorption kinetics and thermodynamics can be attributed to the catalytic effect from α-Fe nano particles and the destabilization of Mg<sub>2</sub>NiH<sub>4</sub> caused by the partial substitution of Ni by Fe, respectively.
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