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Synthesis Of γ-coooh And Its Effects On The Positive Electrodes Of Nickel Batteries

机译:γ-Coooh的合成及其对镍电池正极的影响

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High-valence (3.40) cobalt compounds were synthesized by a chemical precipitation (CP) method. Nickel hydroxide electrodes were then prepared using the synthesized compounds as conducting agents. The effects of high-valence cobalt additions on electrode properties, such as charge-discharge characteristics, electrode reaction reversibility, and cyclic voltammetric performance, were investigated by cyclic voltammetry, X-ray diffraction (XRD), and resistance measurement. The results demonstrate that the addition of high-valence cobalt helps to form a conductive network in the electrode, thus greatly increasing the cycling performance and simultaneously accomplishing an extremely high utilization of the active material in the positive electrode. For comparison, active materials of Co(OH)_2, β-CoOOH, and CoO were also included in the test. It was found that cobalt with a valence of 3.40 has a higher performance within one cycle. The utilization of the active material can reach 100.6% at a discharge rate of 0.2 C.
机译:通过化学沉淀(CP)方法合成了高价(3.40)钴化合物。然后使用合成的化合物作为导电剂制备氢氧化镍电极。通过循环伏安法,X射线衍射(XRD)和电阻测量研究了高价钴添加对电极性能(如充放电特性,电极反应可逆性和循环伏安性能)的影响。结果表明,添加高价钴有助于在电极中形成导电网络,从而大大提高了循环性能,同时实现了正极中活性物质的极高利用率。为了进行比较,测试中还包含了Co(OH)_2,β-CoOOH和CoO的活性材料。已经发现,价为3.40的钴在一个周期内具有更高的性能。在0.2 C的放电速率下,活性物质的利用率可以达到100.6%。

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