氢气储存
烧结
合金
材料科学
相(物质)
电化学
冶金
氢
化学工程
化学
物理化学
电极
工程类
有机化学
作者
Huixin Liu,Jiayi Song,Fei Song,Fansong Wei
标识
DOI:10.1142/s0218625x25400220
摘要
Starting from two precursors, LaNi 3 and MgNi 2 , La[Formula: see text]Mg[Formula: see text]Ni[Formula: see text] alloys were prepared by vacuum powder sintering at the temperatures of [Formula: see text]C, [Formula: see text]C, and [Formula: see text]C. To improve the overall electrochemical properties of the alloy, excessive Mg was added to the alloy at [Formula: see text]C. XRD analysis results show that the alloys consist of LaNi 5 phase, Ce 2 Ni 7 -type phase, and Ce 5 Co[Formula: see text]-type phase. The increase in temperature can promote the formation of the LaNi 5 phase and gradually make the Ce 2 Ni 7 -type phase fade away. Adding excessive Mg makes the Ce 2 Ni 7 -type phase increase significantly. The electrochemical studies showed that the alloy sintered at [Formula: see text]C has a maximum discharge capacity of 209.8[Formula: see text]mAh/g and the best high-rate discharge ability at 900[Formula: see text]mA/g ([Formula: see text]). However, their cycling stabilities showed the opposite results. In addition, the addition of Mg also greatly enhanced the cycling stability of the alloy from 32% to 61.3%. It can be found that the cycling stability is affected by both phase composition and lattice stress.
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