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Hydrothermal synthesis of spherical carbon nanoparticles (CNPs) for supercapacitor electrodes uses

机译:用于超级电容器电极的球面碳纳米粒子(CNPS)的水热合成

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In this paper, hydrothermal method was used to provide stable colloidal suspension of spherical carbon nanoparticles (CNPs) with good uniformity of size and shape. XRD analyses showed the formation of crystalline structure of carbon material. CNPs Raman spectrum indicates the high quality with a low content of structural defects and high graphitic degree. The formation of CNPs is confirmed by an absorption peak at 264 nm. XPS technique showed well a significant decrease of oxygen-containing functional groups, indicating a low degree of graphite oxidation. The active surface area of CNPs was measured by BET technique. TEM images show that CNPs are nearly spherical in shape and the diameters varying between 50 and 120 nm. The CV behaviors showed that CNPs exhibit the higher specific capacitance values, and is greatly improved over that of previously reported carbon nanomaterials.
机译:本文采用水热法提供稳定的球形碳纳米粒子(CNP)的稳定胶体悬浮液,具有良好的尺寸和形状。 XRD分析显示碳材料结晶结构的形成。 CNPS拉曼光谱表明结构缺陷含量低的高质量和高石墨度。 通过264nm的吸收峰确认CNP的形成。 XPS技术显示出含氧官能团的显着降低,表明石墨氧化程度低。 通过BET技术测量CNP的活性表面积。 TEM图像表明CNP几乎是球形的形状,直径在50到120nm之间变化。 CV行为表明,CNP具有较高的特定电容值,并且在先前报告的碳纳米材料的大大提高。

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