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Investigation on structure and electrochemical properties of MgNi+xB (x=0, 2, 5, 10) hydrogen storage alloys

机译:MgNI + X%B(X = 0,2,5,10)储氢合金的结构和电化学性能研究

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Amorphous MgNi+x%B(x=0, 2, 5, 10) hydrogen storage alloys have been prepared by mechanical alloying (MA) and tested as hydrogen storage electrodes. The addition of boron can promote the MgNi alloy to form amorphous phase, increase the atom ratio of Ni/Mg at the alloy powders' surface, and improve the thermal stability of MgNi alloy. The discharge capacity, the high rate dischargeability (HRD) and the exchange current density of the alloy electrodes all increased first, and then decreased with increasing the addition of boron. The maximum discharge capacity, the HRD_(400) and the exchange current density of the alloy with 5%B were 411.6mAh/g, 58.3% and 293.5mA/g respectively, which were 21.8%, 40.0% and 351.5% higher respectively, comparing with that of no boron addition. The electrochemical cycle stability of the alloy electrodes increased with increasing boron additions, and compared with no boron addition, the cycle capacity retention rate S_(20) of the alloy with 10%B increased 64.2%.
机译:通过机械合金化(MA)制备无定形MgNI + X%B(X = 0,2,5,10)储氢合金并作为储氢电极测试。硼的加入可以促进MgNI合金以形成无定形相,从合金粉末表面增加Ni / Mg的原子比,提高MgNi合金的热稳定性。电极的放电容量,高速率放电(HRD)和合金电极的交换电流密度首先增加,然后随着增加硼的加入而降低。具有5%B的合金的最大放电容量,HRD_(400)和交换电流密度分别为411.6mAh / g,58.3%和293.5mA / g,分别为21.8%,40.0%和351.5%,与硼添加的比较。合金电极的电化学循环稳定性随着硼添加的增加而增加,与硼添加相比,合金具有10%B的合金的循环容量保持率S_(20)增加了64.2%。

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