Surface modification of perovskite‐type oxide LaFeO3 with electroless nickel deposition for application in MH‐Ni batteries

Jianyi Xu, Guofang Zhang, Xin Zhao, Feng Hu, Dandan Ke
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Abstract

In this study, the perovskite‐type oxide LaFeO3 is treated by electroless Ni deposition with different reaction time and the electrochemical properties of the resulting material are investigated as the anode for MH‐Ni batteries. XRD, SEM, and TEM measurements reveal a uniform deposition of crystalline nickel on the oxide surface and a clear increase in the amount of Ni coating with the deposition time. The electrochemical analysis shows that the electroless deposition can significantly improve the maximum discharge capacity of the battery. Furthermore, the coated electrodes exhibit excellent activation performance and superior cyclic stability. With the increase in the reaction temperature, improvements in the discharge ability, exchange current density, and diffusing coefficient of hydrogen are also observed.
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化学镀镍法改性钙钛矿型氧化物LaFeO3在MH - Ni电池中的应用
摘要本研究采用化学沉积法处理钙钛矿型氧化物LaFeO 3,并对其作为MH - Ni电池负极材料的电化学性能进行了研究。XRD、SEM、TEM等测试结果表明,随着沉积时间的延长,镍的镀层数量明显增加,且结晶镍在氧化物表面均匀沉积。电化学分析表明,化学沉积可以显著提高电池的最大放电容量。此外,涂层电极表现出优异的活化性能和良好的循环稳定性。随着反应温度的升高,氢气的放电能力、交换电流密度和扩散系数都有所提高。
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