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Cobalt monoxide-doped porous graphitic carbon microspheres for supercapacitor application

机译:一氧化钴掺杂的多孔石墨碳微球用于超级电容器

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摘要

A novel design and facile synthesis process for carbon based hybrid materials, i.e., cobalt monoxide (CoO)-doped graphitic porous carbon microspheres (Co-GPCMs), have been developed. With the synthesis strategy, the mixture of cobalt gluconate, α-cyclodextrin and poly (ethylene oxide)106-poly (propylene oxide)70-poly (ethylene oxide)106 is treated hydrothermally, followed by pyrolysis in argon. The resultant Co-GPCMs exhibits a porous carbon matrix with localized graphitic structure while CoO nanodots are embedded in the carbon frame. Thus, the Co-GPCMs effectively combine the electric double-layer capacitance and pseudo-capacitance when used as the electrode in supercapacitor, which lead to a higher operation voltage (1.6 V) and give rise to a significantly higher energy density. This study provides a new research strategy for electrode materials in high energy density supercapacitors.
机译:已经开发出用于碳基杂化材料,即一氧化钴(CoO)掺杂的石墨多孔碳微球(Co-GPCM)的新颖的设计和容易的合成方法。通过合成策略,将葡糖酸钴,α-环糊精和聚(环氧乙烷)106-聚(环氧丙烷)70-聚(环氧乙烷)106的混合物进行水热处理,然后在氩气中热解。所得的Co-GPCM表现出具有局部石墨结构的多孔碳基质,而CoO纳米点被嵌入碳框架中。因此,当用作超级电容器中的电极时,Co-GPCM有效地结合了双电层电容和伪电容,从而导致更高的工作电压(1.6 V)并显着提高了能量密度。这项研究为高能量密度超级电容器中的电极材料提供了一种新的研究策略。

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