首页> 外文期刊>RSC Advances >Integrating three-dimensional graphene/Fe3O4@C composite and mesoporous Co(OH)(2) nanosheets arrays/graphene foam into a superior asymmetric electrochemical capacitor
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Integrating three-dimensional graphene/Fe3O4@C composite and mesoporous Co(OH)(2) nanosheets arrays/graphene foam into a superior asymmetric electrochemical capacitor

机译:将三维石墨烯/ Fe3O4 @ C复合材料和介孔Co(OH)(2)纳米片阵列/石墨烯泡沫集成到高级不对称电化学电容器中

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摘要

Aqueous electrolyte-based asymmetric electrochemical capacitors (AECs) are promising in the field of energy storage because of their wider potential windows compared to the symmetric capacitors and higher ionic conductivity compared to the organic electrolytes. Most of the research works on AECs are directed towards cathode materials, while anode materials have rarely been investigated. Herein, a novel AEC is constructed, in which two highly conductive and lightweight graphitic substrates, graphene framework and graphene foam, are hybridized with Fe3O4@C core-shell nanoparticles (anodes) and mesoporous Co(OH)(2) nanosheets arrays (NAs) (cathodes), respectively. The as-assembled AEC device shows extended cell voltage (0.0-1.6 V) and excellent cycle stability (72% retention after 8000 cycles). More importantly, a high specific energy of 75 W h kg(-1) is achieved at a specific power of 400 W kg(-1). Even at a 10.3 s charge/discharge rate, specific energy as high as 33 W h kg(-1) can be retained.
机译:基于水电解质的非对称电化学电容器(AEC)在能量存储领域很有前景,因为与对称电容器相比,它们的电势窗口更宽,与有机电解质相比,离子电导率更高。关于AEC的大多数研究工作都针对阴极材料,而阳极材料很少进行研究。在这里,构造了一种新颖的AEC,其中两个高导电性和轻质的石墨基底,石墨烯骨架和石墨烯泡沫与Fe3O4 @ C核壳纳米粒子(阳极)和中孔Co(OH)(2)纳米片阵列(NAs)杂)(阴极)。组装好的AEC器件显示出更高的电池电压(0.0-1.6 V)和出色的循环稳定性(8000次循环后保留率达72%)。更重要的是,在400 W kg(-1)的比功率下可获得75 W h kg(-1)的高比能。即使以10.3 s的充电/放电速率,也可以保持高达33 W h kg(-1)的比能。

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