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首页> 外文期刊>Electrochimica Acta >Flexible three-dimensional carbon cloth/carbon fibers/NiCo 2O 4 composite electrode materials for high-performance all-solid-state electrochemical capacitors
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Flexible three-dimensional carbon cloth/carbon fibers/NiCo 2O 4 composite electrode materials for high-performance all-solid-state electrochemical capacitors

机译:柔性三维碳布/碳纤维/镍尼:INF LOC =“POST”> 2 O 4 复合电极材料 高性能全固态电化学电容器

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摘要

Graphical abstractDisplay OmittedAbstractA flexible three-dimensional carbon cloth/carbon fibers/NiCo2O4composite electrode is preparedviaa two step method: first growth carbon fibers on flexible carbon cloth; second coating NiCo2O4on the carbon cloth/carbon fibers composite. The carbon cloth guarantees the flexibility of electrodes. The three-dimensional carbon cloth/carbon fibers conductive network enhances the ionic transportation property and offer high conductivity. The ultrathin and porous NiCo2O4nanosheet layers contribute high faradic capacity. The hierarchically porous electrode structure further facilitates to shorten the electrolyte diffusion path. When used as electrodes for electrochemical capacitor, the composite electrode exhibits superior energy storage performances with high specific capacitance of 1221Fg?1at 1Ag?1, outstanding cycle stability (81% capacitance retention after 3000 cycles) and excellent flexibility. To further investigate the performances of the carbon cloth/carbon fibers/NiCo2O4composite electrode, we assemble an all-solid-state symmetric electrochemical capacitors device using identical carbon cloth/carbon fibers/NiCo2O4composite as electrodes. The assembled device delivers a high energy density of 27.2Whkg?1at a power density of 1.46kWkg?1and outstanding cycling stability with 91% capacitance retention after 2000 cycles. The combination of excellent flexibility and outstanding energy storage performance of the device will help to pave the way to wearable electronics and devices.]]>
机译:<![cdata [ 图形抽象 显示省略 抽象 柔性三维碳布/碳纤维/镍尼:INF LOC =“POST”> 2 O 4 复合电极是通过斜体>一两步法:柔性碳布上的第一个生长碳纤维;第二涂层Nico 2 O 4 在碳布/碳纤维复合材料上。碳布保证了电极的灵活性。三维碳布/碳纤维导电网络增强离子运输性能,并提供高导电性。超薄和多孔镍钴 2 0 4 纳米片层有助于高感应能力。分层多孔电极结构进一步有助于缩短电解质扩散路径。当用作电化学电容器的电极时,复合电极具有优异的能量存储性能,具有1221fg的高比电容Δ1在1ag 1 ,出色的循环稳定性(3000次循环后的81%电容保留)和优异的灵活性。为了进一步研究碳布/碳纤维/镍/ Nico的性能 2 O 4 复合材料电极,我们使用相同的碳布/碳纤维/ Nico 2 O 4 复合材料作为电极。组装装置的高能量密度为27.2Whkg Δ1以1.46kwkg 1 在2000次循环后具有91%电容保留的循环稳定性。设备的结合具有优异的灵活性和卓越的能量存储性能,将有助于为可穿戴电子和设备铺平道路。 ]]>

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