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Oxygen evolution reaction study on platinized carbon and transition metals (Ni, Co, Mn) for electrolysis of alkaline water

机译:碱性水电解镀锌碳和过渡金属(Ni,Co,Mn)的氧气进化反应研究

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Water electrolysis is a promising method for efficient production of high purity oxygen and hydrogen. Even though noble-metal oxides (PtO2 IrO2, RuO2, and RhO2) are the most active materials for the oxygen evolution reaction, low-cost transition metal oxides are typically used in alkaline electrolysis due to their abundance and relatively high activity and stability. Thus, nickel, cobalt, and manganese have been extensively explored as bifunctional catalysts, capable of catalyzing both the oxygen reduction reaction (ORR) and the oxygen evolution reaction (OER) for the conversion and storage of energy. To improve their catalytic properties, different strategies are used; either by changing the method of preparation or the doping of metal ions. In this paper, we describe the preparation of Mn0.5Ni1.5CoO4oxide by sol-gel method, and we discuss a comparison of electrocatalytic properties between NiO, Mn0.5Ni1.5CoO4and Pt/C.
机译:水电解是一种有效的高纯度氧气和氢气生产的方法。即使贵金属氧化物(PTO 2 伊罗 2 ,Ruo. 2 和rho. 2 )由于它们丰度和相对高的活性和稳定性,是氧化反应最活跃的材料,低成本过渡金属氧化物通常用于碱性电解中。因此,镍,钴和锰已被广泛探索为双官能催化剂,能够催化氧还原反应(ORR)和氧气进化反应(OER)的转化能量。改善催化性质,使用不同的策略;通过改变制备方法或金属离子的掺杂。在本文中,我们描述了Mn的制备 0.5 1.5 COO. 4 通过溶胶 - 凝胶法氧化物,我们讨论了Nio,Mn之间的电催化特性的比较 0.5 1.5 COO. 4 和pt / c。

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