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首页> 外文期刊>Electrochimica Acta >Effect of Co substitution for Ni on the structural and electrochemical properties of La{sub}2Mg(Ni{sub}(1-x)Co{sub}x)9 (x = 0.1-0.5) hydrogen storage electrode alloys
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Effect of Co substitution for Ni on the structural and electrochemical properties of La{sub}2Mg(Ni{sub}(1-x)Co{sub}x)9 (x = 0.1-0.5) hydrogen storage electrode alloys

机译:Co替代Ni对La {sub} 2Mg(Ni {sub}(1-x)Co {sub} x)9(x = 0.1-0.5)储氢电极合金的结构和电化学性能的影响

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The effect of partial substitution of Co for Ni on the structure and electrochemical properties of the thus formed La{sub}2Mg(Ni{sub}(1-x)Co{sub}x){sub}9 (x = 0.1-0.5) quaternary alloys was investigated. All alloys are consisted of a main phase with hexagonal PuNi{sub}3-type structure and a few impurity phases (mainly La{sub}2Ni{sub}7 and LaNi). The increase of Co content in the alloys leads to an increase in both the cell volume and the hydride stability, and leads to a noticeable decrease in cell volume expansion rate (ΔV/V) on hydriding. The discharge capacity of the alloys at 50 mA/g increases slightly with the increase of Co content and passes though a maximum of 404.5 mAh/g at x = 0.2. As the Co content increases, the high-rate dischargeability of the alloy electrodes at 800mA/g (HRDgoo) decreases sharply from 72.8 (x = 0) to 24.5% (x = 0.5), yet the decrease of HRD{sub}800 of the alloy electrodes with lower Co substitution (with x ≤ 0.2) is much milder. The slower decrease of HRD{sub}800 (from 72.8 to 64.2%) of the alloys with x from 0 to 0.2 is mainly attributed to the decrease of eletrocatalytic activity for charge-transfer reaction, the more rapid decrease of the alloys with x > 0.2 is mainly attributed to the lowering of the hydrogen diffusion rate in the bulk of alloy. The cycling capacity retention rate (S{sub}100) of the alloys increase greatly with increasing of Co content, increasing from 60.2% for the alloy with x - 0 to a much higher value of 87.9% for the alloy with x = 0.5. The improvement in cycling stability is attributed to the lower cell volume expansion on hydriding.
机译:Co部分取代Ni对如此形成的La {sub} 2Mg(Ni {sub}(1-x)Co {sub} x){sub} 9(x = 0.1-0.5)的结构和电化学性能的影响)研究了四元合金。所有合金均由具有六方PuNi {sub} 3型结构的主相和一些杂质相(主要是La {sub} 2Ni {sub} 7和LaNi)组成。合金中Co含量的增加导致泡孔体积和氢化物稳定性二者均增加,并且导致氢化时泡孔体积膨胀率(ΔV/ V)显着降低。合金在50 mA / g时的放电容量随Co含量的增加而略有增加,并在x = 0.2时最大为404.5 mAh / g。随着Co含量的增加,合金电极在800mA / g(HRDgoo)下的高倍率放电率从72.8(x = 0)急剧下降至24.5%(x = 0.5),而HRD {sub} 800降低了。 Co取代度较低(x≤0.2)的合金电极要温和得多。 x从0到0.2的合金的HRD {sub} 800下降较慢(从72.8到64.2%)主要是由于电荷转移反应的电催化活性降低,x的合金下降更快。 0.2主要归因于合金主体中氢扩散速率的降低。合金的循环容量保持率(S {sub} 100)随着Co含量的增加而大大增加,从x-0的合金的60.2%增加到x = 0.5的合金的87.9%的更高值。循环稳定性的改善归因于氢化时较低的细胞体积膨胀。

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