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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >An alternative for the anode materials of nickel metal hydride batteries: an AB(3)-type La0.6Gd0.2Mg0.2Ni2.6Co0.3Al0.1 hydrogen storage alloy
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An alternative for the anode materials of nickel metal hydride batteries: an AB(3)-type La0.6Gd0.2Mg0.2Ni2.6Co0.3Al0.1 hydrogen storage alloy

机译:镍金属氢化物电池的阳极材料的替代方案:AB(3)型La0.6GD0.2Mg0.2NI2.6CO0.3AL0.1储氢合金

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摘要

In order to satisfy the demand for the cyclic stability of commercial Ni-MH anodes, a PuNi3 type La0.6Gd0.2Mg0.2Ni2.6Co0.3Al0.1 alloy with excellent overall electrochemical properties was prepared by annealing the as-cast alloy sample at different temperatures for a week. The alloy had the highest PuNi3 type content of 86.9 wt% (1073 K), which offered a capacity retention of 69.6% after 100 cycles. However, 23.7 wt% PuNi3 type phase of the alloy constantly converted into the Ce2Ni7 type phase within a temperature increase of 50 degrees C, which improved the capacity retention by 12.1% under the same discharge capacity. We found that the addition of Gd did not change the stacked [LaMgNi4](LaNi5) superlattice and it maintained the structural stability of the crystal as well as its anti-corrosion, which is also a key factor to improve cyclic stability. These findings imply that alloys with both PuNi3-type and Ce2Ni7-type multiphase structures can be considered as a new choice for hydrogen storage.
机译:为了满足商业Ni-MH阳极的循环稳定性的需求,通过退火铸造合金样品来制备具有优异的整体电化学性质的PUPI3型LA0.6GD0.2MG0.2NI2.6CO0.3AL0.1合金不同的温度一周。合金具有86.9wt%(1073 k)的最高PUPI3型含量,其中100次循环后提供69.6%的容量保留。然而,23.7wt%Pupi3型相对于在50℃的温度升高的温度升高到Ce2Ni7型相中,这在相同的放电容量下提高了12.1%的能力保持。我们发现,添加GD没有改变堆叠的[LAMGNI4](LANI5)超晶格,并保持晶体的结构稳定性以及其防腐蚀,这也是提高循环稳定性的关键因素。这些发现意味着Puei3型和Ce2Ni7型多相结构的合金可以被认为是储氢的新选择。

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