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Nickel nanoparticles effect on the electrochemical energy storage properties of carbon nanocomposite films

机译:镍纳米粒子对碳纳米复合薄膜电化学储能性能的影响

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摘要

The growth of nanostructured nickel: carbon (Ni: C) nanocomposite thin films by the supersonic cluster beam deposition of nickel and carbon clusters co-deposited from two separate beam sources has been demonstrated. Ni: C films retain the typical highly disordered structure with predominant sp~2 hybridization, low density, high surface roughness and granular nanoscale morphology of cluster assembled nanostructured carbon, but display enhanced electric conductivity. The electric double layer (EDL) capacitance of Ni: C films featuring the same thickness (200 nm) and different nickel volumetric concentrations (0–35%) has been investigated by electrochemical impedance spectroscopy employing an aqueous solution of potassium hydroxide (KOH 1M) as electrolyte solution. Evidence of increased electric conductivity, facilitated EDL formation and negligible porous structure modification was found as consequence of Ni embedding. This results in the ability to synthesize electrodes with tailored specific power and energy density by the accurate control of the amount of deposited Ni and C clusters. Moreover, nickel nanoparticles were shown to catalyze the formation of tubular onionlike carbon structures upon mild thermal treatment in inert atmosphere. Electrochemical characterization of the heated nanocomposite electrodes revealed that the presence of long range ordered sp~2 structures further improves the power density and energy storage properties.
机译:通过超音速簇束沉积镍和从两个单独的束源共沉积的碳簇,已经证明了纳米结构的镍:碳(Ni:C)纳米复合薄膜的生长。 Ni:C膜保留了典型的高度无序的结构,具有明显的sp〜2杂化,低密度,高表面粗糙度和簇组装的纳米结构碳的纳米级颗粒状形态,但显示出增强的导电性。通过使用氢氧化钾水溶液(KOH 1M)的电化学阻抗谱研究了具有相同厚度(200 nm)和不同镍体积浓度(0-35%)的Ni:C薄膜的双电层(EDL)电容作为电解液。镍嵌入的结果表明,电导率增加,EDL形成容易并且多孔结构改性可忽略不计。通过精确控制沉积的镍和碳簇的数量,可以合成具有特定比功率和能量密度的电极。此外,在惰性气氛中进行温和热处理后,镍纳米颗粒被显示出催化管状管状洋葱状碳结构的形成。加热的纳米复合电极的电化学表征表明,长程有序sp〜2结构的存在进一步提高了功率密度和能量存储性能。

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