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Highly Stable Gully-Network Co3O4 Nanowire Arrays as Battery-Type Electrode for Outstanding Supercapacitor Performance

机译:高度稳定的沟渠网络Co3O4纳米线阵列作为电池型电极具有出色的超级电容器性能

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摘要

3D transition metal oxides, especially constructed from the interconnected nanowires directly grown on conductive current collectors, are considered to be the most promising electrode material candidates for advanced supercapacitors because 3D network could simultaneously enhance the mechanical and electrochemical performance. The work about design, fabrication, and characterization of 3D gully-network Co3O4 nanowire arrays directly grown on Ni foam using a facile hydrothermal procedure followed by calcination treatment will be introduced. When evaluated as a binder-free battery-type electrode for supercapacitor, a high specific capacity of 582.8 C g−1 at a current density of 1 A g−1, a desirable rate capability with capacity retention about 84.8% at 20 A g−1, and an outstanding cycle performance of 93.1% capacity retention after 25,000 cycles can be achieved. More remarkably, an energy density of 33.8 W h kg−1 at a power density of 224 W kg−1 and wonderful cycling stability with 74% capacity retention after 10,000 cycles can be delivered based on the hybrid-supercapacitor with the as-prepared Co3O4 nanowire arrays as a positive electrode and active carbon as negative electrode. All the unexceptionable supercapacitive behaviors illustrates that our unique 3D gully-network structure Co3O4 nanowire arrays hold a great promise for constructing high-performance energy storage devices.
机译:3D过渡金属氧化物,尤其是由直接在导电集电器上生长的互连纳米线构成的,被认为是高级超级电容器最有希望的电极材料候选,因为3D网络可以同时提高机械性能和电化学性能。将介绍有关使用简便的水热程序并随后进行煅烧处理的,直接在镍泡沫上生长的3D沟状网络Co3O4纳米线阵列的设计,制造和表征的工作。当评估为超级电容器的无粘合剂电池型电极时,在1 A g -1 的电流密度下,其高比容量为582.8 C g -1 ,在20 A g -1 时具有理想的倍率性能和容量保持率约为84.8%,在25,000次循环后,可以实现93.1%的容量保持率。更引人注目的是,在功率密度为224 W kg -1 时,能量密度为33.8 W h kg -1 ,并且在10,000次循环后具有出色的循环稳定性和74%的容量保持率,基于混合超级电容器,以制备好的Co3O4纳米线阵列作为正极,活性炭作为负极进行交付。所有无与伦比的超电容行为说明,我们独特的3D沟渠网络结构Co3O4纳米线阵列为构建高性能储能设备提供了广阔前景。

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