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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Decorating nanoporous ZIF-67-derived NiCo2O4 shells on a Co3O4 nanowire array core for battery-type electrodes with enhanced energy storage performance
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Decorating nanoporous ZIF-67-derived NiCo2O4 shells on a Co3O4 nanowire array core for battery-type electrodes with enhanced energy storage performance

机译:在Co3O4纳米线阵列核心上装饰源自ZIF-67的纳米多孔NiCo2O4壳,用于电池型电极,具有增强的储能性能

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Particle-shaped metal-organic framework-derived metal oxides almost dominate the applications for energy storage. However, they always suffer from agglomeration and terrible internal resistance, which reduce the surface area of active materials, ion diffusion and charge transfer efficiency during the charge-discharge process. Constructing metal-organic framework-derived core-shell nanostructures is a promising route to overcome this obstacle. In this work, a layer of ZIF-67-derived nanoporous NiCo2O4 nanoflakes was perfectly decorated on a Co3O4 nanowire array to build up a core-shell nanowire array architecture. Due to the unique structure that facilitates ion diffusion and charge transfer but without losing the high surface area, the resulting ZIF-67-derived core-shell nanostructure exhibits 3.37 C cm(-2) of area capacity at a current density of 4 mA cm(-2) as well as good rate capability and durability. In addition, the assembled asymmetric supercapacitor delivers a high specific energy density of 50.6 W h kg(-1) at a specific power density of 856 W kg(-1). Even at a high power density of 11.1 kW kg(-1), the device still has an energy density of 30.2 W h kg(-1). The strategy proposed here provides a good way to synthesize metal-organic framework-derived metal oxide nanostructures, and the as-prepared electrodes will be excellent materials for energy storage and other applications.
机译:颗粒状金属-有机骨架衍生的金属氧化物几乎占据了能量存储的主要应用领域。然而,它们总是遭受结块和可怕的内部电阻的困扰,这降低了活性材料的表面积,在电荷放电过程中离子扩散和电荷转移效率。构建金属有机框架衍生的核壳纳米结构是克服这一障碍的有前途的途径。在这项工作中,将一层ZIF-67衍生的纳米多孔NiCo2O4纳米薄片完美地装饰在Co3O4纳米线阵列上,以构建核-壳纳米线阵列架构。由于独特的结构有利于离子扩散和电荷转移,但又不损失高表面积,因此得到的ZIF-67衍生的核壳纳米结构在4 mA cm的电流密度下显示出3.37 C cm(-2)的面积容量(-2)以及良好的速率能力和耐用性。此外,组装的非对称超级电容器在856 W kg(-1)的比功率密度下可提供50.6 W h kg(-1)的高比能量密度。即使在11.1 kW kg(-1)的高功率密度下,该设备的能量密度仍为30.2 W h kg(-1)。本文提出的策略为合成金属-有机骨架衍生的金属氧化物纳米结构提供了一个很好的方法,并且所制备的电极将是用于能量存储和其他应用的出色材料。

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