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Effects of Mm(NiCoAlMn)5 hydrogen storage alloy coated with Ni-Co-P alloy by electroless plating on electrochemical properties of hydride electrodes

机译:化学镀Ni-Co-P合金包覆的Mm(NiCoAlMn)5储氢合金对氢化物电极电化学性能的影响

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摘要

The effect of chemical plating with Ni-Co-P alloy on the properties of MH electrodes is investigated. The results show that the efficiency of storage alloy and the activation of MH electrode have been improved by introducing 1.74% cobalt in the Ni-Co-P alloy coating. The initial discharge capacity is 208 mAh/g. The maximum discharge capacity gets to 298.5 mAh/g. At the same time the cycle life of MH electrodes is improved. The discharge capacity of MH electrodes coated with Ni-Co-P is 88% of the maximum discharge capacity after 300 cycles. Whereas the discharge capacity of bare alloy electrodes retains 62% of the maximum capacity after 300 cycles. An increment of discharge capacity is mainly due to the superposition of the oxidation current of Co as well as improved efficiency of microcurrent collection. The effect of Ni-Co-P alloy coating by electroless plating on the kinetic properties of hydride electrode has been systematically investigated by electrochemical techniques. The results indicate that the kinetic properties of MH electrodes, including exchange current density, limiting current density, have been improved markedly. This improvement of kinetic properties leads to the decrease of the overpotential of anodic and cathodic polarization.
机译:研究了化学镀与Ni-Co-P合金对MH电极性能的影响。结果表明,通过在Ni-Co-P合金涂层中引入1.74%的钴,已经提高了储存合金的效率和MH电极的活化。初始放电容量为208mAh / g。最大放电容量达到298.5 mah / g。同时改善了MH电极的循环寿命。涂有Ni-Co-P的MH电极的放电容量为300次循环后最大放电容量的88%。虽然裸合金电极的放电容量保留300次循环后最大容量的62%。放电容量的增量主要是由于CO的氧化电流的叠加以及微电流收集的提高效率。通过电化学技术系统地研究了通过化学镀对氢化物电极动力学性能的Ni-Co-P合金涂层的影响。结果表明,MH电极的动力学性质,包括交换电流密度,限制电流密度,显着改善。这种动力学的改善导致阳极和阴极极化的过电位的降低。

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