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Printable and disposable supercapacitor from nanocellulose and carbon nanotubes

机译:由纳米纤维素和碳纳米管制成的可印刷和一次性超级电容器

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Supercapacitors are promising energy storage devices providing capacitance much higher than conventional capacitors and higher power density and longer cycle life than Li-batteries. We report printable and disposable supercapacitors fabricated from solution-processed carbon nanotube (CNT) composite material as active electrodes and nanocellulose (NC) as a separator. Use of a highly porous and electrically conducting CNT film as electrode materials eliminates the need of current collector. NC is a robust separator material used instead of conventional polymer separator films. Supercapacitor characterization was done with a galvanostatic discharge method according to an industrial standard. The capacitance of 1.8 cm devices was 14.9-16.5 mF (7.4-9.1 mF/cm or 2.4-2.9 F/g) and equivalent series resistance (ESR) 74-155 Ω. This type of low-cost energy storage devices fabricated from safe and environmentally friendly materials have obvious applications in autonomous intelligence and disposable low-end products.
机译:超级电容器是有前途的储能设备,其储能比传统电容器高得多,并且比锂电池具有更高的功率密度和更长的循环寿命。我们报告了由溶液处理的碳纳米管(CNT)复合材料作为活性电极和纳米纤维素(NC)作为隔板制成的可印刷和一次性超级电容器。使用高度多孔且导电的CNT膜作为电极材料消除了集电器的需要。 NC是一种坚固的隔膜材料,代替了常规的聚合物隔膜。超级电容器的表征是根据工业标准通过恒电流放电方法完成的。 1.8 cm器件的电容为14.9-16.5 mF(7.4-9.1 mF / cm或2.4-2.9 F / g),等效串联电阻(ESR)为74-155Ω。这种由安全和环保材料制成的低成本储能设备在自主智能和一次性低端产品中具有明显的应用。

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