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Stretchable and High-Performance Supercapacitors with Crumpled Graphene Papers

机译:具有皱巴巴的石墨烯纸的可拉伸和高性能超级电容器

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摘要

Fabrication of unconventional energy storage devices with high stretchability and performance is challenging, but critical to practical operations of fully power-independent stretchable electronics. While supercapacitors represent a promising candidate for unconventional energy-storage devices, existing stretchable supercapacitors are limited by their low stretchability, complicated fabrication process, and high cost. Here, we report a simple and low-cost method to fabricate extremely stretchable and high-performance electrodes for supercapacitors based on new crumpled-graphene papers. Electrolyte-mediated-graphene paper bonded on a compliant substrate can be crumpled into self-organized patterns by harnessing mechanical instabilities in the graphene paper. As the substrate is stretched, the crumpled patterns unfold, maintaining high reliability of the graphene paper under multiple cycles of large deformation. Supercapacitor electrodes based on the crumpled graphene papers exhibit a unique combination of high stretchability (e.g., linear strain ~300%, areal strain ~800%), high electrochemical performance (e.g., specific capacitance ~196 F g[superscript −1]), and high reliability (e.g., over 1000 stretch/relax cycles). An all-solid-state supercapacitor capable of large deformation is further fabricated to demonstrate practical applications of the crumpled-graphene-paper electrodes. Our method and design open a wide range of opportunities for manufacturing future energy-storage devices with desired deformability together with high performance.
机译:具有高拉伸性和高性能的非常规储能装置的制造具有挑战性,但对于完全独立于功率的可拉伸电子设备的实际操作而言至关重要。尽管超级电容器是非常规储能设备的有希望的候选者,但是现有的可拉伸超级电容器受到其低拉伸性,复杂的制造工艺和高成本的限制。在这里,我们报告了一种基于新的皱纹石墨烯纸的超级电容器的极易拉伸和高性能电极的简单低成本制造方法。通过利用石墨烯纸中的机械不稳定性,可以将粘合在顺应性基材上的电解质介导的石墨烯纸弄皱成自组织的图案。随着基材的拉伸,皱纹的图案会展开,从而在多次大变形周期下保持石墨烯纸的高可靠性。基于皱纹石墨烯纸的超级电容器电极具有高拉伸性(例如,线性应变〜300%,面应变〜800%),高电化学性能(例如比电容〜196 F g [上标-1])的独特组合,和高可靠性(例如,超过1000个拉伸/松弛循环)。进一步制造了具有大变形能力的全固态超级电容器,以展示皱纹石墨烯-纸电极的实际应用。我们的方法和设计为制造具有所需可变形性和高性能的未来储能设备提供了广泛的机会。

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