Porous carbon materials with different dimensions and their applications in supercapacitors

Miao Zhang, Zixin Peng
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Abstract

Supercapacitors have become attractive energy storage devices due to their high power density, good cycling stability, and fast charging and discharging speeds. Porous carbon has great specific surface area, high energy density and good conversion performance, so porous carbon as supercapacitor electrode material has been widely concerned. Carbon materials with different dimensions and sizes, such as porous carbon spheres, porous carbon nanotubes (CNTs), porous carbon nanofibers (CNFs) porous graphene (GR) and activated carbon (AC) can provide different performance advantages. At the same time, the composite of porous carbon with metal compounds, conductive polymers and particles containing N/P/O/S can further optimize electrode materials, as well as the significant effects on the increase of specific surface area and energy density are obtained. This article introduces the porous carbon materials used as electrode materials in recent years, as well as their multi-level structural materials and related composite materials. We first introduced porous carbon electrode materials with different dimensions and compared their electrochemical performance. Then, based on various research results, the factors affecting its electrochemical performance were discussed in detail. As well as, the preparation methods of porous carbon electrode materials were introduced, and the specific requirements, advantages and disadvantages of different preparation methods were briefly analyzed. The application of porous carbon electrode materials combined with other materials in supercapacitors is listed. Finally, a summary and outlook of the current research status were supplied, providing reference for the rational design of porous carbon supercapacitors in the future.
不同尺寸的多孔碳材料及其在超级电容器中的应用
超级电容器具有功率密度高、循环稳定性好、充放电速度快等特点,已成为极具吸引力的储能设备。多孔碳具有比表面积大、能量密度高、转换性能好等特点,因此多孔碳作为超级电容器的电极材料受到了广泛关注。不同尺寸和大小的碳材料,如多孔碳球、多孔碳纳米管(CNT)、多孔碳纳米纤维(CNF)、多孔石墨烯(GR)和活性炭(AC)等,具有不同的性能优势。同时,多孔碳与金属化合物、导电聚合物和含 N/P/O/S 的颗粒复合,可进一步优化电极材料,并在增加比表面积和能量密度方面获得显著效果。本文介绍了近年来用作电极材料的多孔碳材料及其多层次结构材料和相关复合材料。首先介绍了不同尺寸的多孔碳电极材料,并比较了它们的电化学性能。然后,基于各种研究成果,详细讨论了影响其电化学性能的因素。此外,还介绍了多孔碳电极材料的制备方法,并简要分析了不同制备方法的具体要求和优缺点。列举了多孔碳电极材料与其他材料结合在超级电容器中的应用。最后,对目前的研究现状进行了总结和展望,为今后合理设计多孔碳超级电容器提供了参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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