首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Carbon nanotube@manganese oxide nanosheet core-shell structure encapsulated within reduced graphene oxide film for flexible all-solid-state asymmetric supercapacitors
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Carbon nanotube@manganese oxide nanosheet core-shell structure encapsulated within reduced graphene oxide film for flexible all-solid-state asymmetric supercapacitors

机译:碳纳米管@锰氧化物纳米片核 - 壳结构在柔性全固态不对称超级电容器中封装在氧化石墨烯氧化物膜中

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摘要

To achieve flexible energy storage devices with high performance, a new class of flexible electrodes with exquisite architectures that provide well-defined pathways for efficient ionic and electronic transport is highly needed. A flexible 3D electrode is fabricated based on assembling 1D carbon nanotube@manganese oxide (MnO2) nanosheet core-shell structures (CM) with 2D reduced graphene oxide (rGO) nanosheets. MnO2 nanosheets are grafted vertically along the carbon nanotube backbone through a secondary (seeded) growth. Flexible hybrid films (GCM) composed of CM and rGO are prepared by vacuum filtration of the mixed dispersions of both components assisted by electrostatic interactions. By adopting this ternary hybrid architecture, the GCM electrode exhibits exceptional charge storage capability in 1 M Na2SO4 aqueous electrolyte with high specific capacitance (298 F g(-1) at 0.5 A g(-1)), good rate capability, and high cycling stability (90.3% retention over 5000 cycles). A highly flexible all-solid-state asymmetrical supercapacitor is assembled with GCM as the positive electrode and holey graphene film spaced with carbon sphere (H-GCS) as the negative electrode. GCM//H-GCS asymmetric supercapacitor delivers a maximum energy density of 24.6 Wh kg(-1) and a power density of 9005.3 W kg(-1) with excellent cycle life of 75.9% retention after 10 000 cycles. (c) 2017 Elsevier Ltd. All rights reserved.
机译:为了实现具有高性能的灵活的能量存储装置,重新需要一种新的柔性电极,具有精致的架构,提供了用于高效离子和电子传输的明确途径。柔性3D电极基于组装1D碳纳米管@锰氧化物(MNO2)纳米晶核 - 壳结构(CM),用2D氧化石墨烯(RGO)纳米液。 MnO2纳米片通过次级(种子)生长沿碳纳米管骨架垂直移植。由Cm和Rgo组成的柔性混合膜(GCM)通过静电相互作用辅助的两个组分的混合分散体真空过滤制备。通过采用该三元混合架构,GCM电极在1M Na 2 SO 4水性电解质中具有出色的电荷存储能力,具有高特定电容(298f g(-1),良好的速率能力和高循环稳定性(90.3%超过5000次循环)。高度柔性的全固态不对称超微普及器用GCM组装,作为与碳球(H-GCS)间隔开的正电极和霍巴烯膜作为负极。 GCM // H-GCS不对称超级电容器可提供24.6WH kg(-1)的最大能量密度和9005.3W kg(-1)的功率密度,在10 000次循环后,优异的循环寿命为75.9%的保留。 (c)2017 Elsevier Ltd.保留所有权利。

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