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Nickel Hydroxide as an Active Material for the Positive Electrode in Rechargeable Alkaline Batteries

机译:氢氧化镍作为可充电碱性电池中正极的活性材料

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摘要

Spherical nickel hydroxide powders coprecipitated with the additives Ca(OH)2, Co(OH)2, and Zn(OH)2 were prepared through a spraying technique. These powders, which have a higher tapping density and a much smaller pore volume and crystalline size than conventional powders, were used as the active materials of nickel hydroxide electrodes. The effects of the Ca(OH)2, Co(OH)2, and Zn(OH)2 additions on electrode properties such as charge-discharge, reversibility of the electrode reaction, and cycle life, were studied. The relationship between the electrode swelling and the formation of g-NiOOH was also investigated. The results show that nickel hydroxide powders having a smaller crystallite size show better electrode characteristics such as lower overpotential, higher plateau discharge potential, and higher capacity. The utilization of the active material in the electrodes illustrates that for general use it is better to add Co21, while for a wider temperature range, it would be better to consider the addition of Ca21. The cycle life of the electrode containing Zn21 was improved obviously because there was less electrode swelling due to much reduced formation of g-NiOOH.
机译:通过喷涂技术制备了与添加剂Ca(OH)2,Co(OH)2和Zn(OH)2共沉淀的球形氢氧化镍粉末。与常规粉末相比,这些粉末具有更高的振实密度和小得多的孔体积和晶体尺寸,被用作氢氧化镍电极的活性材料。研究了Ca(OH)2,Co(OH)2和Zn(OH)2的添加对电极性能(如充放电,电极反应的可逆性和循环寿命)的影响。还研究了电极膨胀与g-NiOOH的形成之间的关系。结果表明,具有较小微晶尺寸的氢氧化镍粉末表现出更好的电极特性,例如较低的过电位,较高的平台放电电位和较高的容量。电极中活性材料的利用表明,对于一般用途,最好添加Co21,而对于更宽的温度范围,最好考虑添加Ca21。含Zn21的电极的循环寿命得到明显改善,这是因为由于减少了g-NiOOH的形成而导致的电极膨胀减少了。

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