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Simple method to construct three-dimensional porous carbon for electrochemical energy storage

机译:简单的方法来构建三维多孔碳的电化学能量储存

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摘要

A 3D porous carbon matrix with a high nitrogen content has been synthesized by employing particles of a nitrogen-enriched superabsorbent polymer (SAP) from the waste diapers of newborn babies. The derived material exhibits an ultrathin layered structure with interconnected pores and a large specific surface area. As it inherits the unique skeleton of the functional polymer from waste diapers, the resulting material (NSAPC-W) has been assessed as an inserting host anode with excellent ultralong cycling performance, as well as steady rate capability for both Li+ and Na+ ions in half cells. Furthermore, the unique structure imparts intimate structural interconnectivity, wide open channels for ion diffusion, and a large accessible surface area, as well as high structural stability, and opens up a wide horizon for electrochemical applications.
机译:三维多孔碳矩阵具有高氮内容已经被使用合成添加氮的高吸水性树脂的颗粒聚合物(SAP)浪费尿布的新生儿婴儿。超薄层状结构相互联系毛孔和大的比表面积。继承了独特的骨架的功能聚合物从废物尿布,由此产生材料(NSAPC-W)作为评估插入主机的阳极超长骑自行车的性能,以及稳定的速度能力对于李+和Na +离子一半细胞。亲密的互连结构,敞开的离子扩散渠道,和一个大可访问的表面积以及高结构稳定,打开了一个广阔的地平线对电化学的应用程序。

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