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Ni3S2-coated metal hydride anode with high-power and long-life performance for low-temperature Ni-MH power batteries

机译:Ni3S2涂层金属氢化物阳极,具有高功率和长寿命性能的低温Ni-MH电池

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摘要

The corrosion or oxidation layers on the surface of hydrogen storage alloy severely obstruct the high-rate and low-temperature performance of the anode, which restricts the applications of nickel metal hydride batteries in high-power fields, extreme environments and national defense. Here a novel method is developed to obtain excellent high-rate and low-temperature performance of metal hydride (MH) anode via the in-situ coating of Ni3S2. Through a facile hydrothermal sulfurization at 120 degrees C, the stable and porous Ni3S2 nanosheets arrays are effectively synthesized on the surface of the hydrogen storage alloys. Attributing to the high electronic conductivity, excellent electrocatalytic activity and structure stability of those Ni3S2 coating layers, the low-temperature, high-power performance and cycling life of our elaborate MH alloy are significantly improved. Notably, the Ni3S2 -coated (LaCe)(1.0)Ni3S2Co0.75Mn0.35Al0.1 alloy with 87.9% of cycling stability maintains a capacity retention rate of 53.6% at 3000 mA g(-1), which is 2.3 times that of the original alloy (23.7%), and at -40 degrees C, the discharge capacity improves to 198.2 mAh g(-1) and P-peak attains to 750.1 W kg(-1). This novel sulfurization technology of hydrogen storage alloy provides a cog-efficient solution for high-power, low-temperature and long-life Ni-MH batteries.
机译:储氢合金表面上的腐蚀或氧化层严重阻碍了阳极的高速和低温性能,这限制了镍金属氢化物电池在大功率领域,极端环境和国防的应用。这里开发了一种新的方法,以通过Ni3 S 2的原位涂层获得优异的金属氢化物(MH)阳极的优异高速和低温性能。通过120℃的容易水热硫化,在储氢合金的表面上有效地合成稳定和多孔的Ni3 S2纳米晶片。归因于高电子电导率,优异的电催化活性和这些Ni3S2涂层的结构稳定性,我们的精美MH合金的低温,高功率性能和循环寿命得到了显着改善。值得注意的是,Ni3S2 - 涂层(鞋带)(1.0)Ni3 S 2 CO 0.75mn0.35A10.1合金,循环稳定性的87.9%保持在3000 mA g(-1)的容量保持率为53.6%,这是2.3倍原始合金(23.7%)和-40℃,放电容量改善为198.2mAhg(-1),P峰值达到750.1W kg(-1)。这种储氢合金的新型硫化技术为大功率,低温和长寿命的Ni-MH电池提供了一种嵌入式高效的解决方案。

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