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Flexible 3D core-shell nanoforest arrays trimetal electrode for high capacitance supercapacitor

机译:柔性3D芯 - 壳纳米主机阵列Trimetal电极,用于高电容超级电容器

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摘要

A supercapacitor electrode with high capacitance is mainly based on the careful design of nanostructures and the intelligent hybridization of custom active materials. Herein, we designed 3D core-shell nanoforest arrays with hierarchical structure which are directly grown on carbon cloth using a two-step bracket-hydrothermal method and electrodeposition process. Due to the advantages of large specific surface area, abundant pores and active sites, the structure of Mo-Co-Ni(nanotube)@Ni-Co(nanosheet) arrays can promote electrolyte penetration and ions diffusion, further improving the electrochemical performance. The 3D core-shell nanoforest arrays electrode shows outstanding electrochemical performance: a superb areal capacitance of 9.81 F cm(-2) (1998.0 F g(-1)) at the current densities of 1 mA cm(-2), as well as long cycle stability (after 3000 cycles maintains 85.4% of the highest capacitance value). This work may provide a promising method for design of flexible supercapacitor electrode materials.
机译:具有高电容的超级电容器电极主要基于仔细设计纳米结构和定制活性材料的智能杂交。在此,我们设计了使用两步支架 - 水热法和电沉积工艺直接在碳布上生长的层次结构的3D芯壳纳米阵列。由于大的比表面积大,孔隙丰富和活性位点,Mo-Co-Ni(Nanotube)的结构可以促进电解质渗透和离子扩散,进一步提高电化学性能。 3D芯壳纳米阵列电极显示出卓越的电化学性能:在1 mA cm(-2)的电流密度,以及1mb(-2)的一级9.81f cm(-2)(1998.0f g(-1))的精湛面积电容,以及长周期稳定性(3000次循环后保持最高电容值的85.4%)。这项工作可以为柔性超级电容器电极材料提供有希望的方法。

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