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Nickel oxide nanotube synthesis using multiwalled carbon nanotubes as sacrificial templates for supercapacitor application

机译:氧化镍纳米管合成使用多壁碳纳米管作为超级电容器应用的牺牲模板

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摘要

A novel approach for the fabrication of nickel oxide nanotubes based on multiwalled carbon nanotubes as a sacrificial template is described. Electroless deposition is employed to deposit nickel onto carbon nanotubes. The subsequent annealing of the product in the presence of air oxidizes nickel to nickel oxide, and carbon is released as gaseous carbon dioxide, leaving behind nickel oxide nanotubes. Electron microscopy and elemental mapping confirm the formation of nickel oxide nanotubes. New chelating polyelectrolytes are used as dispersing agents to achieve high colloidal stability for both the nickel-coated carbon nanotubes and the nickel oxide nanotubes. A gravimetric specific capacitance of 245.3 F g(-1) and. an areal capacitance of 3.28 F cm(-2) at a scan rate of 2 mV s(-1) is achieved, with an electrode fabricated using nickel oxide nanotubes as the active element with a mass loading of 24.1 mg cm(-2).
机译:描述了基于多壁碳纳米管作为牺牲模板制备氧化镍纳米管的新方法。 用电磁沉积用于将镍沉积在碳纳米管上。 随后在空气存在下将产物氧化镍氧化镍,碳被释放为气态二氧化碳,留下氧化镍纳米管。 电子显微镜和元素映射证实了镍氧化镍纳米管的形成。 新的螯合聚电解质用作分散剂以实现镍涂覆的碳纳米管和氧化镍纳米管的高胶体稳定性。 重量特定电容为245.3 f g(-1)和。 实现3.28f cm(-2)的面积电容,扫描速率为2mVs(-1),用电极使用镍氧化镍纳米管作为有源元素制造,其质量负荷为24.1mg cm(-2) 。

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