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首页> 外文期刊>RSC Advances >3D interconnected networks of a ternary hierarchical carbon nanofiber/MnO2/Ni(OH)2 architecture as integrated electrodes for all-solid-state supercapacitors
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3D interconnected networks of a ternary hierarchical carbon nanofiber/MnO2/Ni(OH)2 architecture as integrated electrodes for all-solid-state supercapacitors

机译:3D互连网络的三元层级碳纳米纤维/ MnO2 / Ni(OH)2架构作为全固态超级电容器的集成电极

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We demonstrate the design and fabrication of hierarchical Ni(OH) _(2) nanosheets vertically grown on a porous carbon nanofiber/MnO _(2) composite (CF/MnO _(2) ) to form three dimensional interconnected networks via a facile hydrothermal process for supercapacitor applications. The obtained CF/MnO _(2) /Ni(OH) _(2) electrode exhibits high specific capacitance (2079 F g ~(?1) at 0.5 A g ~(?1) in 6 M KOH aqueous solution), rendering its promising application as a potential electrode for supercapacitors. In order to increase the energy density, an asymmetric supercapacitor (ASC) has been successfully fabricated using CF/MnO _(2) /Ni(OH) _(2) as the positive electrode and CFs as the negative electrode. The as-fabricated all-solid-state ASC device achieves a maximum energy density of 67.6 W h kg ~(?1) , highly comparable with the previously reported Ni(OH) _(2) -based ASCs. The present hierarchical CF/MnO _(2) /Ni(OH) _(2) ternary hybrid brings new opportunities to design and develop high-performance electrode materials for next-generation supercapacitors in flexible electronics.
机译:我们证明了在多孔碳纳米纤维/ MnO _(2)复合物(CF / MnO _(2))上垂直生长的分层Ni(OH)_(2)纳米片的设计和制造,以通过容易水热形成三维互连的网络超级电容器应用程序的过程。得到的CF / MNO _(2)/ Ni(OH)_(2)电极在6M KOH水溶液中的0.5Ag〜(α1)下具有高比电容(2079fg〜(α1)),渲染其希望应用于超级电容器的潜在电极。为了增加能量密度,使用Cf / MnO _(2)/ Ni(OH)_(2)作为正极和CFS作为负电极成功制造了不对称的超级电容器(ASC)。由制造的全固态ASC器件达到67.6WH kg〜(α1)的最大能量密度,与先前报告的Ni(OH)_(2)的ASCS高度相当。本分层CF / MNO _(2)/ NI(OH)_(2)三元混合机会为柔性电子产品中的下一代超级电容器设计和开发高性能电极材料。

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