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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Ultrathin NiCo2O4 nanosheets grown on three-dimensional interwoven nitrogen-doped carbon nanotubes as binder-free electrodes for high-performance supercapacitors
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Ultrathin NiCo2O4 nanosheets grown on three-dimensional interwoven nitrogen-doped carbon nanotubes as binder-free electrodes for high-performance supercapacitors

机译:在三维交织的氮掺杂碳纳米管上生长的超薄NiCo2O4纳米片,用作高性能超级电容器的无粘合剂电极

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摘要

A novel three-dimensional (3D) Ni foam/N-CNT/NiCo2O4 nanosheet electrode was synthesized by combining a chemical vapor deposition method and a facile electrochemical deposition method followed by a calcination process. The N-CNTs entangle with each other and construct a 3D highly conductive network, creating a structure which offers a skeleton for homogeneous electrodeposition of thin NiCo2O4 nanosheets. By taking advantage of the one-dimensional (1D) N-CNTs, the two-dimensional (2D) ultrathin nanosheets and the 3D hybrid structure, the 3D Ni foam/N-CNT/NiCo2O4 nanosheet electrode exhibits superior supercapacitive performances with high specific capacitance (1472 F g(-1) at 1 A g(-1)), remarkable rate capability and excellent cycling stability (less than 1% loss after 3000 cycles). The outstanding supercapacitive performance is attributed to the highly conductive 3D Ni foam/N-CNT substrates and the ultrathin morphology of the NiCo2O4 nanosheets. The former offer a strong skeleton for uniform electrodeposition, endure the volume change, and provide a good electrical conducting pathway for ion and electron transport; meanwhile the latter possess numerous active sites and a short diffusion path. Moreover, the synthesis strategy can be extended to the preparation of other 3D electrode materials for supercapacitors and other energy-storage devices.
机译:结合化学气相沉积法和简便的电化学沉积法,然后进行煅烧工艺,合成了新型的三维(3D)Ni泡沫/ N-CNT / NiCo2O4纳米片电极。 N-CNT相互缠结并构建3D高导电网络,从而创建了一种结构,该结构为薄NiCo2O4纳米片的均匀电沉积提供了骨架。通过利用一维(1D)N-CNT,二维(2D)超薄纳米片和3D杂化结构,3D Ni泡沫/ N-CNT / NiCo2O4纳米片电极表现出卓越的超电容性能和高比电容(在1 A g(-1)时为1472 F g(-1)),出色的速率能力和出色的循环稳定性(3000次循环后损耗小于1%)。出色的超电容性能归因于高导电性3D Ni泡沫/ N-CNT基底和NiCo2O4纳米片的超薄形貌。前者为均匀的电沉积提供了坚固的骨架,可承受体积变化,并为离子和电子的传输提供了良好的导电途径。同时后者具有许多活性位点和较短的扩散路径。此外,该合成策略可以扩展到制备用于超级电容器和其他储能装置的其他3D电极材料。

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