513 PLD法により作製したMg/Fe積層体の水素吸蔵特性

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  • 513 Hydrogen Storage Properties of Mg/Fe Laminates with PLD

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Hydrogen storage alloy has the potential material to become one of the most promising candidates as an effective storage method and it has higher safety and storage density than other storage systems The Mg-based hydrogen storage alloy has the advantage of high hydrogen storage density (7.6 wt% in MgH_2), light weight and low cost, while it needs to improve its slow reaction kinetics and high desorption temperature for practical applications In this research, we prepared the Mg-Fe hydrogen storage alloy with pulsed laser deposition (PLD) and studied the effects of lamination order and Ti catalyst addition to hydrogen absorption and desorption properties of the Mg-Fe hydrogen storage alloy with differential scanning calorimetry (DSC) As a result, it found that Mg-4 Oat %Fe alloy with Ti that was slightly attached on the Mg as a catalyst showed the absorption and desorption of hydrogen and its dehydrogenation temperature is 165℃, i.e.it is lower than that of Mg hydride

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