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Wearable energy-dense and power-dense supercapacitor yarns enabled by scalable graphene-metallic textile composite electrodes

机译:可伸缩的石墨烯-金属纺织复合电极可穿戴的能量密集和功率密集的超级电容器纱线

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摘要

One-dimensional flexible supercapacitor yarns are of considerable interest for future wearable electronics. The bottleneck in this field is how to develop devices of high energy and power density, by using economically viable materials and scalable fabrication technologies. Here we report a hierarchical graphene-metallic textile composite electrode concept to address this challenge. The hierarchical composite electrodes consist of low-cost graphene sheets immobilized on the surface of Ni-coated cotton yarns, which are fabricated by highly scalable electroless deposition of Ni and electrochemical deposition of graphene on commercial cotton yarns. Remarkably, the volumetric energy density and power density of the all solid-state supercapacitor yarn made of one pair of these composite electrodes are 6.1mWh cm-3 and 1,400 mW cm-3, respectively. In addition, this SC yarn is lightweight, highly flexible, strong, durable in life cycle and bending fatigue tests, and integratable into various wearable electronic devices.
机译:一维柔性超级电容器纱线对于未来的可穿戴电子产品具有相当大的兴趣。该领域的瓶颈是如何通过使用经济可行的材料和可扩展的制造技术来开发高能量和功率密度的设备。在这里,我们报告了一种分层的石墨烯-金属纺织复合电极的概念,以解决这一挑战。分层的复合电极由固定在镀镍棉纱表面的低成本石墨烯片组成,这些石墨烯片是通过高度可扩展的化学镀镍沉积和石墨烯在商品棉纱上的电化学沉积而制成的。值得注意的是,由一对这些复合电极制成的全固态超级电容器纱线的体积能量密度和功率密度分别为6.1mWh cm-3和1,400mW cm-3。此外,这种SC纱线轻巧,高度柔韧性强,坚固耐用,在生命周期和弯曲疲劳测试中均可集成到各种可穿戴电子设备中。

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