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Flexible and wearable fiber shaped high voltage supercapacitors based on copper hexacyanoferrate and porous carbon coated carbon fiber electrodes

机译:基于六氰合铁酸铜和多孔碳包覆碳纤维电极的柔性可穿戴纤维状高压超级电容器

摘要

In this work, we report the fabrication of a new high voltage hybrid fiber supercapacitor (HFSC) with porous carbon coated carbon fibers (PC@CFs) as the negative electrode and copper hexacyanoferrate coated carbon fibers (CuHCF@CFs) as the positive electrode. Carbon fibers (CFs) were used as both the substrate and the current collector due to their good conductivity, high flexibility, good mechanical strength, and light weight. The as-fabricated HFSC can be cycled reversibly in the range of 0-2 V and exhibits excellent electrochemical performance with a specific capacitance of 19.2 F g-1 (68.2 mF cm-2 or 3.1 F cm-3) and an energy density of 10.6 W h kg-1 (180.85 μW h cm-2 or 8.11 mW h cm-3), better than those reported in the previous literature. Additionally, the HFSCs have retained their original electrochemical performance even after bending, suggesting good flexibility of the device. The promising results show great potential in developing HFSCs with CuHCF@CFs and PC@CFs electrodes for practical wearable devices.
机译:在这项工作中,我们报告了一种新的高压混合纤维超级电容器(HFSC)的制造,该电容器以多孔碳包覆碳纤维(PC @ CFs)为负电极,六氰基铁酸铜包覆碳纤维(CuHCF @ CFs)为正电极。碳纤维(CFs)由于其良好的导电性,高柔韧性,良好的机械强度和重量轻而被用作基材和集电器。制成的HFSC可以在0-2 V的范围内可逆循环,并具有出色的电化学性能,比电容为19.2 F g-1(68.2 mF cm-2或3.1 F cm-3),能量密度为10.6 W h kg-1(180.85μWh cm-2或8.11 mW h cm-3),优于以前的文献报道。另外,HFSC即使在弯曲后也保持了其原始的电化学性能,表明该装置具有良好的柔韧性。令人鼓舞的结果表明,开发具有CuHCF @ CFs和PC @ CFs电极的HFSC实用的可穿戴设备的巨大潜力。

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