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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Molten salt synthesis of nitrogen-doped carbon with hierarchical pore structures for use as high-performance electrodes in supercapacitors
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Molten salt synthesis of nitrogen-doped carbon with hierarchical pore structures for use as high-performance electrodes in supercapacitors

机译:具有分级孔结构的氮掺杂碳的熔融盐合成,用作超级电容器中的高性能电极

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摘要

Porous carbon materials have received considerable attention recently, particularly in the energy field. To meet the increasing demands for electrochemical energy conversion and storage-related applications, the development of novel porous carbon materials that show high electrochemical performances is highly desired. Here, a facile method for the preparation of nitrogen-doped hierarchically porous carbon materials is proposed. Cost-effective chitosan is selected as the nitrogen-containing carbon source, and the carbonation is realized in a ZnCl2 molten salt at a temperature range of 400-700 degrees C. Hierarchically porous carbon with a specific surface area of 1582 m(2) g(-1) and a high nitrogen content of 9.0 wt.% is obtained at a carbonation temperature of 600 degrees C with a high carbon yield of 42 wt.% based on the weight of chitosan. Importantly, using this as-synthesized carbon material as the electrode in supercapacitors, high specific capacitances of 252 and 145 F g(-1) at current densities of 0.5 and 50 A g(-1), respectively, and stable cycling performance without decay after 10,000 cycles at 8 A g(-1) are realized. The facile synthesis, easy recovery of ZnCl2 and high carbon yield make this new method highly promising for the preparation of porous carbon materials for use in supercapacitors and other fields. (C) 2015 Elsevier Ltd. All rights reserved.
机译:多孔碳材料最近受到了相当大的关注,特别是在能源领域。为了满足对电化学能量转换和与存储相关的应用的不断增长的需求,迫切需要开发显示出高电化学性能的新型多孔碳材料。在此,提出了一种用于制备氮掺杂的分级多孔碳材料的简便方法。选择具有成本效益的壳聚糖作为含氮碳源,并在ZnCl2熔融盐中在400-700摄氏度的温度范围内实现碳化。分层多孔碳的比表面积为1582 m(2)g (-1)和基于壳聚糖的重量,在600℃的碳化温度下获得9.0重量%的高氮含量,具有42重量%的高碳收率。重要的是,使用这种合成的碳材料作为超级电容器中的电极,分别在电流密度为0.5和50 A g(-1)时分别具有252和145 F g(-1)的高比电容以及稳定的循环性能而不会衰减在10,000次循环后达到8 A g(-1)。易于合成,易于回收的ZnCl2和高碳收率使这种新方法在制备用于超级电容器和其他领域的多孔碳材料方面具有广阔的前景。 (C)2015 Elsevier Ltd.保留所有权利。

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