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首页> 外文期刊>Scientific reports. >Three-dimensional skeleton networks of graphene wrapped polyaniline nanofibers: an excellent structure for high-performance flexible solid-state supercapacitors
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Three-dimensional skeleton networks of graphene wrapped polyaniline nanofibers: an excellent structure for high-performance flexible solid-state supercapacitors

机译:石墨烯包装聚苯胺纳米纤维三维骨架网络:高性能柔性固态超级电容器的优异结构

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Thin, robust, lightweight, and flexible supercapacitors (SCs) have aroused growing attentions nowadays due to the rapid development of flexible electronics. Graphene-polyaniline (PANI) hybrids are attractive candidates for high performance SCs. In order to utilize them in real devices, it is necessary to improve the capacitance and the structure stability of PANI. Here we report a hierarchical three-dimensional structure, in which all of PANI nanofibers (NFs) are tightly wrapped inside reduced graphene oxide (rGO) nanosheet skeletons, for high-performance flexible SCs. The as-fabricated film electrodes with this unique structure showed a highest gravimetric specific capacitance of 921 F/g and volumetric capacitance of 391 F/cm3. The assembled solid-state SCs gave a high specific capacitance of 211 F/g (1 A/g), a high area capacitance of 0.9 F/cm2, and a competitive volumetric capacitance of 25.6 F/cm3. The SCs also exhibited outstanding rate capability (~75% retention at 20 A/g) as well as excellent cycling stability (100% retention at 10 A/g for 2000 cycles). Additionally, no structural failure and loss of performance were observed under the bending state. This structure design paves a new avenue for engineering rGO/PANI or other similar hybrids for high performance flexible energy storage devices.
机译:由于柔性电子产品的快速发展,薄型,坚固,轻巧和灵活的超级超级电容器(SCS)引起了日益增长的注意。石墨烯 - 聚苯胺(PANI)杂种是高性能SCS的吸引力候选者。为了在真实装置中使用它们,有必要提高PANI的电容和结构稳定性。在这里,我们报告了一种层次的三维结构,其中所有Pani纳米纤维(NFS)都紧密地包裹在氧化物(RGO)纳米骨骼骨架中,用于高性能柔性SC。具有这种独特结构的制造薄膜电极显示出921 f / g的最高重量特定电容,并且391 f / cm 3 的体积电容。组装的固态SC为211f / g(1 a / g)的高比电容,高面积电容为0.9 f / cm 2 ,竞争体积电容为25.6 f / cm 3 。 SCS还表现出出色的速率能力(20A / g的〜75%〜75%),以及优异的循环稳定性(100%在10 A / G的100%循环中保留)。另外,在弯曲状态下没有观察到性能失败和性能损失。这种结构设计为高性能柔性储能设备铺平了用于工程RGO / PANI或其他类似混合动力的新大道。

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