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首页> 外文期刊>ACS Omega >Enhanced Electrochemical Performance of Self-Assembled Nanoflowers of MoS2 Nanosheets as Supercapacitor Electrode Materials
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Enhanced Electrochemical Performance of Self-Assembled Nanoflowers of MoS2 Nanosheets as Supercapacitor Electrode Materials

机译:MoS2纳米片作为超级电容器电极材料的自组装纳米花的增强电化学性能

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As supercapacitor electrode materials, their structures, including specific surface area, instability, and interconnection, determine the electrochemical performances (specific capacitance, cycle stability, and rate performance). In this study, 1T-MoS2 nanosheets were self-assembled into nanoflowers via a one-pot facile hydrothermal reaction. The nanoflowers retain the excellent electrical conductive performance and the feature of inherent high specific surface area of the nanosheets. For the sheets are interconnected to each other in flower structure, the structure is more stable and the charges are more easily transferred. Thus, compared to the nanosheet electrode, the nanoflower electrode shows the remarkable advantage when used as the electrode of the energy-storage device, whether it is 1T phase or 2H phase in KCl or in KOH. When measured at 0.5 A g–1 in KOH electrolyte, the MoS2 nanoflower electrode exhibits a high specific capacitance of 1120 F g–1. At the same time, when cycling 2000 times at a current density of 10 A g–1, the capacitance retention ratio can reach up to 96%.
机译:作为超级电容器电极材料,其结构(包括比表面积,不稳定性和互连性)决定了电化学性能(比电容,循环稳定性和倍率性能)。在这项研究中,1T-MoS2纳米片通过一锅便捷的水热反应自组装成纳米花。纳米花保留了优异的导电性能以及纳米片固有的高比表面积的特征。由于片以花结构彼此互连,所以结构更稳定并且电荷更容易转移。因此,与纳米片电极相比,无论是在KCl中还是在KOH中是1T相还是2H相,纳米花电极在用作储能装置的电极时都显示出显着的优势。当在KOH电解质中以0.5 A g-1进行测量时,MoS2纳米花电极显示出1120 F g-1的高比电容。同时,当在10 A g–1的电流密度下循环2000次时,电容保持率可以达到96%。

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