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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Ultrathin mesoporous NiO nanosheet-anchored 3D nickel foam as an advanced electrode for supercapacitors
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Ultrathin mesoporous NiO nanosheet-anchored 3D nickel foam as an advanced electrode for supercapacitors

机译:超薄介孔NiO纳米片锚定3D镍泡沫作为超级电容器的高级电极

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摘要

As promising electrode materials for electrochemical supercapacitors, pseudocapacitive transition metal oxides such as NiO possess high theoretical specific capacitance, environmental benignity and good abundance. However their areal capacitance and cycling stability are greatly restricted by their poor electronic conductivity (NiO, 10(-2) to 10(-3) S cm(-1)). Here we propose an in situ growth strategy in combination with nanoscale design to construct ultrathin mesoporous NiO nanosheets on a 3D network of nickel foam. The hybrid structures show well enhanced conductivity and ion transfer, giving rise to an ultrahigh specific capacitance of 2504.3 F g(-1) which is close to the theoretical value of NiO. The electrodes also exhibit remarkable cycling stability (no degradation of the overall capacitance after 45 000 cycles). The amazing electrochemical performance of such hybrid structures makes them potential electrodes in supercapacitors. The present strategy could be popularized in other transition metal oxides like Co3O4, MnO2, etc. to create electrodes with desirable nanostructures.
机译:作为电化学超级电容器的有前途的电极材料,准电容性过渡金属氧化物(如NiO)具有较高的理论比电容,环境友好性和良好的丰度。但是,它们的面积电容和循环稳定性受到其较差的电子电导率(NiO,10(-2)至10(-3)S cm(-1))的极大限制。在这里,我们提出了一种结合纳米级设计的原位生长策略,以在镍泡沫的3D网络上构造超薄中孔NiO纳米片。杂化结构显示出增强的电导率和离子转移,从而产生了2504.3 F g(-1)的超高比电容,接近NiO的理论值。电极还具有出色的循环稳定性(在45 000次循环后,总电容不会降低)。这种混合结构的惊人电化学性能使其成为超级电容器中的潜在电极。本策略可在其他过渡金属氧化物(如Co3O4,MnO2等)中普及,以创建具有所需纳米结构的电极。

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