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Hierarchical grass like NiCo2O4 nanoflakes on 3-dimensional microporous electrically conductive network with Superior Electrochemical Performance

机译:像尼科2O4纳米薄片等三维微孔导电网络等层次草,具有卓越的电化学性能

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Bimetallic oxide nickel cobaltite (NiCo2O4) nanoflakes are fabricated on the surface and sidewall of three dimensional microporous electrically conductive network (MECN) as the active electrode materials for miniature supercapacitors by hydrothermal method. The X-ray diffraction (XRD) and scanning electron microscopy (SEM) characterisation of as-prepared material demonstrates that the nanostructure grown on the MECN consists of a NiCo2O4 nanoflake layer. Compared with the nanostructured nickel growth on the MECN, the as-prepared NiCo2O4/MECN nanoflake has shown enhanced electrochemical properties, manifesting a high capacitance of 607.29 F g~(-1) (7.29 F cm~(-2)) at 10 mA cm~(-2) and good cycling stability of 60.60% capacity retention after 2000 cycles. Even at the power density of 1000.0 W Kg~(-1), the device still has the energy density of 134.71 Wh Kg~(-1) which is comparable to related research. The large specific capacitance and remarkable rate capability can attribute to the unique 3D ordered porous architecture, which facilitates electron and ion transport, enlarges the liquid-solid interfacial area, and enhances the utilization efficiency of the active materials. Meanwhile, the weight and size of the device are reduced.
机译:通过水热法在三维微孔导电网络(MECN)的表面和侧壁上制造双金属氧化物镍钴罐(NicO2O4)纳米薄片作为用于微型超级电容器的活性电极材料。 X射线衍射(XRD)和扫描电子显微镜(SEM)表征的制备材料表明,在MECN上生长的纳米结构包括NicO 2 O 4纳米酚层。与MECN上的纳米结构镍生长相比,所示的NicO 2 O 4 / Mecn纳米烷显示出具有增强的电化学性能,表现为10mA的高电容为607.29 f g〜(-1)(7.29 f cm〜(-2)) CM〜(-2),良好的循环稳定性为2000次循环后的60.60%的容量保留。即使在1000.0Wkg〜(-1)的功率密度,该器件仍然具有134.71WH kg〜(-1)的能量密度,其与相关研究相当。大的特定电容和显着的速率能力可以归因于独特的3D有序多孔结构,这促进了电子和离子传输,扩大了液体固体界面区域,并增强了活性材料的利用效率。同时,减少了装置的重量和尺寸。

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