Shengjun Chen, Wenrui Wang, Xinyue Zhang, Xiaofeng Wang
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引用次数: 0
摘要
石墨烯具有高比表面积和高导电性,理论上将其添加到活性炭电极中应能显著提高超级电容器的储能性能。遗憾的是,这种理想结果在实际商业超级电容器的设计和生产中很少得到验证。本文通过特殊的工艺设计,在材料合成阶段去除石墨烯/活性碳杂化物中容易诱发副反应的含氧官能团,并通过干法工艺制备出高密度、低内阻的电极。在此基础上,设计了具有全片结构的碳涂层铝箔集电体,并将其与石墨烯/活性炭混合电极组装在一起,形成了圆柱形结构的商用超级电容器。实验测试证实,这种超级电容器具有高容量密度、功率密度、低内阻(约 0.06 mΩ)、良好的大电流充放电特性和较长的使用寿命,10 W 循环后容量保持率超过 80%。
High-Performance Supercapacitors Based on Graphene/Activated Carbon Hybrid Electrodes Prepared via Dry Processing
Graphene has a high specific surface area and high electrical conductivity, and its addition to activated carbon electrodes should theoretically significantly improve the energy storage performance of supercapacitors. Unfortunately, such an ideal outcome is seldom verified in practical commercial supercapacitor design and production. In this paper, the oxygen-containing functional groups in graphene/activated carbon hybrids, which are prone to induce side reactions, are removed in the material synthesis stage by a special process design, and electrodes with high densities and low internal resistances are prepared by a dry process. On this basis, a carbon-coated aluminum foil collector with a full tab structure is designed and assembled with graphene/activated carbon hybrid electrodes to form a commercial supercapacitor in cylindrical configuration. The experimental tests confirmed that such supercapacitors have high capacity density, power density, low internal resistance (about 0.06 mΩ), good high-current charging/discharging characteristics, and a long lifetime, with more than 80% capacity retention after 10 W cycles.