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Multi-layer-stacked Co9S8 micro/nanostructure directly anchoring on carbon cloth as a flexible electrode in supercapacitors

机译:Multi-layer-stacked Co9S8微/纳米结构直接锚定碳布作为一个灵活在超级电容器电极

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摘要

Rational design and synthesis of electrode materials containing uniformly stacked lamella structures with high surface areas are attractive for efficient storage of electrochemical energy. In this work, Co9S8 clusters with a uniformly stacked lamella structure was directly anchored onto carbon cloth (CC) by an easy-to-implement chemical solution processing method, which involves the homogeneous growth of the CoCO3 precursor, promoting the formation of nanosheets during the subsequent sulfurization process. Due to the conductive substrate (CC) and special multi-layer micro/nanostructure (Co9S8), the flexible Co9S8/CC electrode, which can be tailored, bent and twisted arbitrarily without affecting its electrochemical properties, also exhibits excellent electrochemical properties with a high specific capacitance (1475.4 F g(-1) at 1 A g(-1)), a good rate capacity (80.2% retention at 20 A g(-1)) and excellent cycling stability (92.9% retention over 5000 cycles). In addition, the assembled solid-state asymmetric supercapacitor device containing the fabricated Co9S8 as the positive electrode and activated carbon as the negative electrode, also exhibits a high energy density of 20.3 W h kg(-1) at a power density of 22796.1 W kg(-1) and a high energy density of 33.2 W h kg(-1) at a power density of 817.9 W kg(-1). Because of its good electrochemical properties and flexibility, the flexible Co9S8/CC electrode material is very promising to be used in flexible supercapacitors and wearable electronic technology.
机译:合理的设计和合成电极包含统一堆放层材料结构具有高表面积颇具吸引力为高效的电化学能量储存。在这个工作中,Co9S8集群一致叠片层结构直接锚定在碳布(CC)由一个易于实施化学溶液处理方法涉及到CoCO3均匀增长的前体,促进nanosheets的形成在随后的硫化过程。导电衬底(CC)和特别多层微/纳米结构(Co9S8)灵活Co9S8 / CC电极,可以量身定做,任意弯曲和扭曲影响其电化学性能表现出良好的电化学性能高的比电容(1475.4 g F (1)1 g(1)),一个好的率(80.2%能力保留在20 g(1))和优秀的自行车稳定(92.9%保留超过5000周期)。与会的固态不对称超级电容器设备包含捏造Co9S8正极和激活碳作为负电极,还展品高能量密度20.3 W h公斤(1)的权力密度为22796.1 W公斤(1)和高的能量密度为33.2 W h公斤(1)的功率密度817.9公斤(1)。电化学性能和灵活性,非常灵活Co9S8 / CC电极材料承诺用于柔性超级电容器和可穿戴电子技术。

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