Phase forming law and electrochemical properties of A2B7-type La–Y–Ni-based hydrogen storage alloys with different La/Y ratios

Journal of Rare Earths(2022)

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摘要
The effects of different proportions of La and Y elements in the A-side on the structure and properties of A 2 B 7 -type La–Y–Ni hydrogen storage alloys have been investigated. The (La,Y) 2 Ni 7 hydrogen storage alloys with different La/Y ratios were prepared by sintering the Y 2 Ni 4 precursor and different AB 5 -type precursors at 1298 K for 5 h and subsequently annealed for 20 h at 1248 K. All the alloys only contain Ce 2 Ni 7 (2H-type) and Gd 2 Co 7 (3R-type) phases with different mass ratios. As the La/Y ratio decreases, the cell volume of the two phases declines and the corresponding plateau pressure gradually increases. As the proportion of Y in the alloy increases, the hydrogen storage capacity increases gradually from 1.309 wt% (La/Y = 1/1) to 1.713 wt% (La/Y = 1/5) and the high-rate discharge (HRD 1500 ) ability of the alloy electrodes increases gradually from 62.7% (La/Y = 1/1) to 88.6% (La/Y = 1/5). The hydrogen diffusion rate in the bulk of the alloy is the controlling step of hydriding/dehydriding kinetics. The Y element can effectively inhibit the hydrogen-induced amorphous (HIA) of La–Y–Ni alloys, but the poor stability of the Y element in alkaline KOH aqueous solution leads to a decrease in the electrochemical cyclic stability with increasing Y content. (La,Y) 2 Ni 7 hydrogen storage alloys with different La/Y ratios were prepared by powder sintering A 2 B 4 - and AB 5 -type precursors, and the effect of La/Y ratio on the phase structure and properties for the alloys was studied systematically.
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关键词
La–Y–Ni hydrogen storage alloy,A2B7-type structure,La/Y ratio,Hydrogenation characteristics,Rare earths
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