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首页> 外文期刊>International journal of hydrogen energy >Rational design of hierarchical core-shell structured CoMoO_4@CoS composites on reduced graphene oxide for supercapacitors with enhanced electrochemical performance
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Rational design of hierarchical core-shell structured CoMoO_4@CoS composites on reduced graphene oxide for supercapacitors with enhanced electrochemical performance

机译:还原型氧化石墨烯上层状核-壳结构化CoMoO_4 @ CoS复合材料的合理设计,用于超级电容器,具有增强的电化学性能

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摘要

Engineering multicomponent active materials as an advanced electrode with the rational designed core-shell structure is an effective way to enhance the electrochemical performances for supercapacitors. Herein, three-dimensional self-supported hierarchical CoMoO4@CoS core-shell heterostructures supported on reduced graphene oxide/Ni foam have been rationally designed and prepared via a facile approach. The unique structure and the synergistic effects between two different materials, as well as excellent electronic conductivity of the reduced graphene oxide, contribute to the increased electrochemically active site and enhanced capacitance. The core-shell CoMoO4@CoS composite displays the superior specific capacitance of 3380.3 F g(-1) (1 A g(-1)) in the three-electrode system and 81.1% retention of the initial capacitance even after 6000 cycles. Moreover, an asymmetric device was successfully prepared using CoMoO4@CoS and activated carbon as positiveegative electrodes. It is worth mentioning that the device delivered the high energy density of 59.2 W h kg(-1) at the power density of 799.8 W kg(-1) and the excellent cycle performance (about 91.5% capacitance retention over 6000 cycles). These results indicate that the core-shell CoMoO4@CoS composites offers the novelty strategy for preparation of electrodes for energy conversion and storage devices. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:将多组分活性材料作为具有合理设计核壳结构的高级电极,是提高超级电容器电化学性能的有效途径。在此,已经通过一种简便的方法合理地设计和制备了在还原的氧化石墨烯/ Ni泡沫上支撑的三维自支撑分层CoMoO4 @ CoS核-壳异质结构。两种不同材料之间的独特结构和协同效应,以及还原后的氧化石墨烯的出色电导率,有助于增加电化学活性位并提高电容量。核-壳型CoMoO4 @ CoS复合材料在三电极系统中显示出3380.3 F g(-1)(1 A g(-1))的优良比电容,即使经过6000次循环,初始电容仍保持81.1%。此外,使用CoMoO4 @ CoS和活性炭作为正/负电极成功制备了一种不对称器件。值得一提的是,该器件以799.8 W kg(-1)的功率密度提供了59.2 W h kg(-1)的高能量密度和出色的循环性能(在6000次循环中约有91.5%的电容保持率)。这些结果表明,核-壳型CoMoO4 @ CoS复合材料为制备用于能量转换和存储设备的电极提供了新颖的策略。 (C)2020 Hydrogen Energy Publications LLC。由Elsevier Ltd.出版。保留所有权利。

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