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Effect of Nickel Oxide Synthesis Conditions on its Electrochemical Behavior in Alkaline Media

机译:碱性条件下氧化镍合成条件对其电化学行为的影响

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Nickel oxide (NiO) was synthesized using three different aqueous-phase precipitation methods, and connections were made between physical and electrochemical properties. Room temperature NaOH-precipitated NiO showed the highest electrocatalytic activity for the methanol oxidation reaction and stability among those synthesized. Microcracking and electrode disintegration was associated with the γ-NiOOH/α-Ni(OH)_2 redox couple in combination with the oxygen evolution reaction. Carbonate electrolytes have potential as a superior reaction medium to hydroxide, evidenced by 3-4 times higher average current densities and 85% lower charge transfer resistances. In addition, its moderate alkalinity limits electrode and membrane deterioration.
机译:使用三种不同的水相沉淀法合成了氧化镍(NiO),并在物理和电化学性质之间建立了联系。室温下,NaOH沉淀的NiO对甲醇的氧化反应具有最高的电催化活性,并且在所合成的NiO中具有最高的稳定性。微裂纹和电极崩解与γ-NiOOH/α-Ni(OH)_2氧化还原对结合氧释放反应有关。碳酸盐电解质具有比氢氧化物优越的反应介质的潜力,其平均电流密度提高3-4倍,电荷转移电阻降低85%,证明了这一点。另外,其适度的碱度限制了电极和膜的劣化。

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