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首页> 外文期刊>Micro and Nano Systems Letters >A flexible cable-shaped supercapacitor based on carbon fibers coated with graphene flakes for wearable electronic applications
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A flexible cable-shaped supercapacitor based on carbon fibers coated with graphene flakes for wearable electronic applications

机译:一种柔性碳纤维状电缆状超级电容器,其表面涂覆了石墨烯薄片,可穿戴电子应用

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This work presents a flexible cable-shaped supercapacitor based on carbon fibers (CFs) coated with graphene flakes (GFs) for wearable electronic applications. The CF bundles were adopted as base materials and the GFs were coated on the surface of CFs using a simple dipping method for the enhancement of the specific surface area and the higher conductivity of flexible electrodes. H~(2)SO~(4)was mixed with poly(vinyl alcohol) (PVA) to form a gel electrolyte, which can prevent leakage. Polydimethylsiloxane (PDMS) was selected as a packaging material to fabricate the proposed flexible supercapacitor due to its flexibility and good thermal and chemical stability. From the electrochemical analysis, the fabricated device exhibited 15.099–6.492?mF/cm_(2)of specific capacitance and 2.097–0.902?μWh/cm_(2)of energy density in the range of 50–300?mV/s of scan rate. These values were about 1.9 times larger than the supercapacitor without being coated with the GFs. In addition, the specific capacitance showed small difference of 3.4% between straight and twisted positions, which assures the mechanical stability of the flexible cable-shaped supercapacitor.
机译:这项工作提出了一种基于碳纤维(CF)的柔性电缆状超级电容器,该碳纤维涂覆有可穿戴电子应用的石墨烯薄片(GFs)。将CF束用作基材,并使用简单的浸渍方法将GFs涂覆在CFs的表面上,以增加比表面积和提高柔性电极的电导率。将H〜(2)SO〜(4)与聚乙烯醇(PVA)混合形成凝胶电解质,可防止泄漏。由于聚二甲基硅氧烷(PDMS)的柔韧性以及良好的热稳定性和化学稳定性,因此被选择作为包装材料来制造拟议的柔性超级电容器。根据电化学分析,制成的器件在扫描速率为50-300?mV / s的范围内显示出15.099–6.492?mF / cm_(2)的比电容和2.097–0.902?μWh/ cm_(2)的能量密度。 。这些值是未涂覆GF的超级电容器的1.9倍。此外,比电容在笔直和扭曲位置之间显示出3.4%的小差异,从而确保了柔性电缆状超级电容器的机械稳定性。

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