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Free-standing hybrid films based on graphene and porous carbon particles for flexible supercapacitors

机译:基于石墨烯和多孔碳颗粒的自支撑混合膜,用于柔性超级电容器

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摘要

Free-standing flexible solid-state supercapacitors are attracting attention as a power supply for electronic equipment. Here we report a novel strategy to fabricate free-standing flexible hybrid papers made up of porous carbon particles combined with graphene sheets. The synergetic effect between the carbon particles and the graphene sheets entails two important advantages: (a) binder-free electrodes formed by carbon particles can be built with the assistance of the graphene sheets and (b) the restacking of the graphene sheets is avoided to a great extent due to the fact that the carbon particles act as spacers. These hybrid papers combine important properties for their use in solid-state supercapacitors: (a) large specific surface area, (b) good electrical conductivity, (c) high packing density and (d) excellent flexibility. They exhibit a volumetric electrochemical performance which is clearly superior to electrodes fabricated with carbon particles agglomerated with a binder. In addition, they achieve an excellent areal capacitance (103 mF cm−2) at current densities as high as 1400 mA cm−2 and are able to deliver a large amount of energy (∼12 μW h cm−2) at high power densities (316 mW cm−2). In this work, a robust, flexible and high-performance solid-state supercapacitor has been assembled using such hybrid papers.
机译:自立式柔性固态超级电容器作为电子设备的电源正在引起关注。在这里,我们报告了一种新颖的策略来制造由多孔碳颗粒和石墨烯片组成的独立式柔性混合纸。碳颗粒和石墨烯片之间的协同效应具有两个重要优点:(a)可以在石墨烯片的帮助下构建由碳颗粒形成的无粘合剂电极,并且(b)避免了石墨烯片的重新堆放,从而很大程度上是由于碳颗粒充当了隔离物。这些混合纸在固态超级电容器中具有重要的性能:(a)大的比表面积,(b)良好的导电性,(c)高堆积密度和(d)优异的柔韧性。它们表现出明显的体积电化学性能,明显优于由附有粘合剂的碳颗粒制成的电极。此外,它们在高达1400 mA cm-2的电流密度下具有出色的面电容(103 mF cm-2),并能够在高功率密度下传递大量能量(〜12μWh cm-2) (316 mW cm-2)。在这项工作中,已经使用此类混合纸组装了坚固,灵活且高性能的固态超级电容器。

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