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用于高性能不对称超级电容器的均相核壳结构NiMoO@NiMoO与活性炭

Homogeneous Core/Shell NiMoO@NiMoO and Activated Carbon for High Performance Asymmetric Supercapacitor.

作者信息

Dong Jia Yi, Xu Jin Cheng, Hui Kwun Nam, Yang Ye, Su Shi Chen, Li Lin, Zhang Xi Tian, Ng Kar Wei, Wang Shuang Peng, Tang Zi Kang

机构信息

Institute of Applied Physics and Materials Engineering, University of Macau, Avenida da Universidade, Taipa 999078, Macao SAR, China.

Institute of Optoelectronic Material and Technology, South China Normal University, Guangzhou 510631, China.

出版信息

Nanomaterials (Basel). 2019 Jul 19;9(7):1033. doi: 10.3390/nano9071033.

Abstract

Here, we report the extraordinary electrochemical energy storage capability of NiMoO@NiMoO homogeneous hierarchical nanosheet-on-nanowire arrays (SOWAs), synthesized on nickel substrate by a two-stage hydrothermal process. Comparatively speaking, the SOWAs electrode displays superior electrochemical performances over the pure NiMoO nanowire arrays. Such improvements can be ascribed to the characteristic homogeneous hierarchical structure, which not only effectively increases the active surface areas for fast charge transfer, but also reduces the electrode resistance significantly by eliminating the potential barrier at the nanowire/nanosheet junction, an issue usually seen in other reported heterogeneous architectures. We further evaluate the performances of the SOWAs by constructing an asymmetric hybrid supercapacitor (ASC) with the SOWAs and activated carbon (AC). The optimized ASC shows excellent electrochemical performances with 47.2 Wh/kg in energy density of 1.38 kW/kg at 0-1.2 V. Moreover, the specific capacity retention can be as high as 91.4% after 4000 cycles, illustrating the remarkable cycling stability of the NiMoO@NiMoO//AC ASC device. Our results show that this unique NiMoO@NiMoO SOWA has great prospects for future energy storage applications.

摘要

在此,我们报道了通过两步水热法在镍基底上合成的NiMoO@NiMoO同质分级纳米片-纳米线阵列(SOWAs)具有非凡的电化学储能能力。相比之下,SOWAs电极比纯NiMoO纳米线阵列展现出更优异的电化学性能。这些改进可归因于其独特的同质分级结构,该结构不仅有效地增加了用于快速电荷转移的活性表面积,还通过消除纳米线/纳米片结处的势垒显著降低了电极电阻,而这一问题在其他报道的异质结构中通常会出现。我们通过将SOWAs与活性炭(AC)构建不对称混合超级电容器(ASC)来进一步评估SOWAs的性能。优化后的ASC在0 - 1.2 V时展现出优异的电化学性能,能量密度为47.2 Wh/kg,功率密度为1.38 kW/kg。此外,在4000次循环后比电容保持率高达91.4%,这表明NiMoO@NiMoO//AC ASC器件具有出色的循环稳定性。我们的结果表明,这种独特的NiMoO@NiMoO SOWA在未来储能应用中具有广阔前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83fd/6669477/52f89ffd0862/nanomaterials-09-01033-g001.jpg

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