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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >A high-performance flexible and weavable asymmetric fiber-shaped solid-state supercapacitor enhanced by surface modifications of carbon fibers with carbon nanotubes
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A high-performance flexible and weavable asymmetric fiber-shaped solid-state supercapacitor enhanced by surface modifications of carbon fibers with carbon nanotubes

机译:通过用碳纳米管对碳纤维进行表面改性而增强的高性能柔性可编织不对称纤维状固态超级电容器

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摘要

To meet the demands of high energy storage and low productive cost as well as the ability to be incorporated into wearable electronics, we developed a flexible and weavable asymmetric fiber-shaped solid-state supercapacitor (a-FSSC) based on carbon fiber bundle@CNT-NiCo(OH)(x) (CF@CNC) and carbon fiber bundle@activated carbon (CF@AC) electrodes with increased operating voltage (1.4-1.6 V) and capacitance. For the positive electrode of CF@CNC, great electrochemical performance enhancement brought about by surface modifications with air plasma and carbon nanotube (CNT) coating is demonstrated. For the negative electrode of CF@AC, a facile and effective way of incorporating activated carbon into carbon fiber bundles is developed. The resultant assembled a-FSSC showed an areal energy and power density of 33.0 mu W h cm(-2) and 0.75 mW cm(-2) at 1.6 V, which are better than those of most of the present fiber-shaped supercapacitors. The volumetric energy and power density of 0.84 mW h cm(-3) and 19.1 mW cm(-3) are also comparable to the reported results. Its long cycle life (100% capacitance retention after 8000 charge-discharge cycles) reveals its high electrochemical stability. High capacitance retention in the repeated bending (20% decay after 1000 bending times) and torsion (107% retention after 1000 twisting times) tests demonstrated the great flexibility, structural stability and potential utilization of the a-FSSC in wearable electronics. As a demonstration, a woolen fabric woven with three a-FSSCs connected in series can light a blue LED and be worn on the arm.
机译:为了满足高能量存储和低生产成本以及将其整合到可穿戴电子设备中的能力,我们开发了一种基于碳纤维束@CNT的柔性可编织非对称纤维状固态超级电容器(a-FSSC) -NiCo(OH)(x)(CF @ CNC)和碳纤维束活性碳(CF @ AC)电极,具有更高的工作电压(1.4-1.6 V)和电容。对于CF @ CNC的正极,证明了通过空气等离子体和碳纳米管(CNT)涂层进行表面改性所带来的电化学性能的极大提高。对于CF @ AC的负极,开发了一种将活性炭掺入碳纤维束中的简便有效的方法。最终组装的a-FSSC在1.6 V电压下的面能量和功率密度分别为33.0μW h cm(-2)和0.75 mW cm(-2),优于大多数当前的纤维状超级电容器。 0.84 mW h cm(-3)和19.1 mW cm(-3)的体积能量和功率密度也与报告的结果相当。它的长寿命(在8000次充放电循环后100%的电容保持率)表明了其高电化学稳定性。在反复弯曲(1000次弯曲后衰减20%)和扭转(1000次扭转后保持107%弯曲)测试中,高电容保持率证明了a-FSSC在可穿戴电子产品中的巨大灵活性,结构稳定性和潜在利用率。作为演示,用三个串联的a-FSSC编织的羊毛织物可以点亮蓝色LED并戴在手臂上。

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