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Nitrogen-doped graphene fiber webs for multi-battery energy storage

机译:Nitrogen-doped石墨烯光纤网multi-battery能量储存

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摘要

Freestanding carbon-based electrodes with large surface areas and pore volumes are essential to fast ion transport and long-term energy storage. Many of the current porous carbon substrates are composed of particulates, making it difficult to form a self-supported structure. Herein, novel highly porous nitrogen-doped graphene fiber webs (N-GFWs) are prepared using a facile wet-spinning method. The wet chemical process facilitates simultaneous N-doping and surface wrinkling of graphene fibers in a one-pot process. The atomic structure and electrical conductivity of N-GFWs are tailored by tuning the degree of N-doping and thermal reduction for multi-battery charge storage in both lithium-oxygen batteries (LOBs) and lithium-sulfur batteries (LSBs). The N-GFW900 electrode presents an excellent electrocatalytic activity and the cathode with a high areal loading of 7.5 mg cm(-2) delivers a remarkable areal capacity of 2 mA h cm(-2) at 0.2 mA cm(-2) for LOBs. The N-GFW700 interlayer with abundant oxygenated and nitrogen functional groups demonstrates effective entrapment of polysulfides in LSBs, delivering a much improved specific capacity after 200 cycles at 0.5C with a remarkable decay rate of 0.04%. The current approach paves the way for rational design of porous graphene-based electrodes, satisfying multifunctional requirements for high-energy storage applications.
机译:独立式的碳基电极与大表面积和孔隙体积是必不可少的快离子运输和长期储存能量。许多目前的多孔碳基质由微粒组成的,很难且结构形式。高度多孔nitrogen-doped石墨烯纤维网使用一个简单湿纺(N-GFWs)准备方法。同时N-doping和表面起皱石墨烯纤维在一个锅的过程。N-GFWs结构和电导率是调优N-doping的程度和量身定制的热还原multi-battery电荷存储在两个lithium-oxygen电池(lob)和锂硫电池(lsb)。电极提供了一个很好的electrocatalytic活动与阴极高的区域加载7.5毫克厘米(2)提供了一个引人注目的马区域容量2 h厘米马(2)为0.2厘米(2)lob。含氧和含氮官能团展示了聚硫的有效截留在lsb,提供更具体的改善能力在200周期在0.5摄氏度显著的衰减率为0.04%。方法为合理设计铺平了道路多孔石墨烯电极,令人满意多功能要求高能存储应用程序。

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