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Morphology tuning of porous CoO nanowall towards enhanced electrochemical performance as supercapacitors electrodes

机译:多孔COO纳米墙体朝向超级电容器电化学的形态调整

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摘要

CoO with porous nanowall structure is fabricated by a combined solvothermal and annealing process. The micromorphology of CoO is fine-tuned by controlling the annealing temperature. Nano-sized pores below similar to 50 nm are achieved at 400 degrees C annealing with a high specific surface area of 65 m(2) g(-1). The unique porous nanowall structure leads to large surface areas and increase electrolyte/electrode interfaces, benefiting enhanced electrochemical performance of CoO. High specific capacitance of 352 F g(-1) has been obtained at 1 A g(-1) with good rate capability (72.7% capacitance retention from 1 to 20 A g(-1)) and good cycling stability (92.9% of initial capacitance after 5000 cycles), making it a promising electrode for supercapacitor.
机译:具有多孔纳米金属结构的COO通过组合的溶剂热和退火工艺制造。 通过控制退火温度来微调CoO的微晶。 低于50nm的纳米尺寸孔以400℃的退火实现,具有65m(2)g(-1)的高比表面积。 独特的多孔纳米槽结构导致大表面积并增加电解质/电极界面,利益增强COO的电化学性能。 在1A的高速率能力(1至20 A G(-1))和良好的循环稳定性(92.9%的电容保留)和良好的速率能力(72.7%的电容保留)中获得了高比电容。 5000个循环后的初始电容),使其成为超级电容器的有希望的电极。

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