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Solution-Blown Aligned Nanofiber Yarn and Its Application in Yarn-Shaped Supercapacitor

机译:溶液吹干对齐的纳米纤维纱线及其在纱线超级电容器中的应用

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摘要

Yarn-shaped supercapacitors with great flexibility are highly anticipated for smart wearable devices. Herein, a device for continuously producing oriented nanofiber yarn based on solution blowing was invented, which was important for the nanofiber yarn electrode to realize mass production. Further, the yarn-shaped supercapacitor was assembled by the yarn electrode with the polypyrrole (PPy) grown on aligned carbon fiber bundles@Polyacrylonitrile nanofibers (CFs@PAN NFs). Electrical conductivity and mechanical properties of the yarn electrode can be improved by the carbon fiber bundles. The specific surface area of the yarn electrode can be enlarged by PPy. The yarn-shaped supercapacitors assembled by the PVA/LiCl/H3PO4 gel electrolyte showed high areal specific capacitance of 353 mF cm−2 at a current density of 0.1 A g−1, and the energy density was 48 μWh cm−2 when the power density was 247 μW cm−2. The supercapacitors also exhibited terrific cycle stability (82% after 20,000 cycles). We also proved that this yarn-shaped supercapacitor could easily power up the light emitting diode. This yarn-shaped supercapacitor was meaningful for the development of the smart wearable devices, especially when combined with clothing or fabrics.
机译:对于智能可穿戴设备,高度预期具有良好灵活性的纱线超级电容器。这里,发明了一种基于溶液吹制的用于连续生产的纳米纤维纱线的装置,对于纳米纤维纱线来实现批量生产是重要的。此外,纱线形超级电容器由纱线电极与在对准的碳纤维束上生长的聚吡咯(PPY)组装在聚丙烯腈纳米纤维(CFS @ PAN NFS)上。可以通过碳纤维束改善纱线电极的电导率和机械性能。纱线电极的比表面积可以通过PPY扩大。由PVA / LICL / H3PO4凝胶电解质组装的纱线形超电容器在电流为0.1Ag-1的电流密度下显示出353mF cm-2的高面积特异性电容,并且功率时的能量密度为48μWhcm-2密度为247μWcm-2。超级电容器也表现出极好的循环稳定性(20,000个循环后82%)。我们还证明,这种纱线形超电容器可以很容易地向发光二极管供电。这种纱线形超级电容器对智能可穿戴设备的开发有意义,特别是当与服装或织物结合时。

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