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Nickel-Cobalt Sulfide Nonwoven Cloth with UltraHigh Areal Capacitance for Flexible Supercapacitors

机译:具有超高面容量的柔性超级电容器镍钴硫化物非织造布

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Supercapacitors represent a promising energy storage technology for flexible, miniaturized, and wearable electronic devices in the future. At present, to achieve high mechanical flexibility, many available flexible supercapacitors are constructed into thin electronic devices. However, the thin thickness of the whole supercapacitor electrode will greatly limit the mass loading of active materials and lower the energy density, which as a result, substantially hindering the application of supercapacitors for wearable electronic devices. Herein, we report a magnetic field induced fabrication of threedimensional nonwoven cloth consists of cross-linked ultra-long NiCo sulfide nanowires as a high-performance supercapacitor cathode. Due to the stress release by slippage between the cross- linked nanowires under external force, the NiCo sulfide nonwoven cloth electrode with the thickness up to 0.5 mm can achieve ultra-high flexibility, even foldability and arbitrarily deformable properties. Most importantly, the thick threedimensional architecture enables the high mass loading of active materials, which is crucial for high energy density flexible supercapacitors. The NiCo sulfide nonwoven cloth electrode demonstrates an ultra-high areal capacitance over 4.91 F cm-2, with negligible capacitance decay after 10000 cycles, outperforming most of reported flexible supercapacitors and revealing its great potential for practical application in wearable electronic device.
机译:超级电容器代表了未来用于柔性,小型化和可穿戴电子设备的有前途的储能技术。目前,为了实现高机械柔性,许多可用的柔性超级电容器被构造到薄电子设备中。然而,整个超级电容器电极的薄厚度将极大地限制活性材料的质量负载并降低能量密度,结果,这实质上阻碍了超级电容器在可穿戴电子设备中的应用。本文中,我们报道了磁场诱导的三维无纺布的制造,该三维无纺布由交联的超长NiCo硫化物纳米线组成,是高性能的超级电容器阴极。由于交联的纳米线之间在外力作用下滑动而释放的应力,厚度达0.5 mm的NiCo硫化物无纺布电极可以实现超高的柔韧性,均匀的可折叠性和任意变形的特性。最重要的是,厚的三维结构可实现活性材料的大量负载,这对于高能量密度的柔性超级电容器至关重要。 NiCo硫化无纺布电极在4.91 F cm上显示出超高的面电容 -2 ,其在10000次循环后的电容衰减可忽略不计,优于大多数报道的柔性超级电容器,并显示出其在可穿戴电子设备中的实际应用的巨大潜力。

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