首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Fabrication of High-Performance All-Solid-State Asymmetric Supercapacitors Based on Stable alpha-MnO2@NiCo2O4 Core Shell Heterostructure and 3D-Nanocage N-Doped Porous Carbon
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Fabrication of High-Performance All-Solid-State Asymmetric Supercapacitors Based on Stable alpha-MnO2@NiCo2O4 Core Shell Heterostructure and 3D-Nanocage N-Doped Porous Carbon

机译:基于稳定α-MnO2的高性能全固态不对称超微电容器的制备,基于稳定α-MnO2核心壳异质结构和3D纳米型N掺杂多孔碳

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摘要

A stable alpha-MnO2 nanowire@NiCo2O4 nanosheet core-shell heterostructure and a 3D-nanocage N-doped porous carbon nanosheet with high electrical conductivity are synthesized by a two-solution phase reaction and a facile onestep self-template technique, respectively. The unique alpha-MnO2@ NiCo2O4 heterostructure is characterized by a stable nanostructure, fast electron transport, and numerous ion diffusion channels. The electrode exhibits a high specific capacitance of 1101 F and a cycling stability of 95.8% after 10 000 cycles. Moreover, by introducing N atoms which is favorable for rate performance, the 3D porous carbon offers a large surface area, a proper pore structure and especially high electron conductivity. The specific capacitance of the 3D N-doped porous nanocage carbon electrode reaches 100 F g(-1) at a current densities as high as 100 A The all-solid-state symmetric supercapacitor with excellent electrochemical properties is fabricated using the alpha-MnO2@NiCo2O4 core-shell heterostructure as positive electrode, a 3D N-doped porous nanocage carbon as negative electrode, and a PAAK/KOH gel as solid-state electrolyte. The supercapacitor demonstrates an expanded working potential of 1.7 V, a maximum energy density of 46.2 Wh kg(-1), a maximum power density of 15.3 kW kg(-1), and good capacitance retention of 90% after 2000 cycles.
机译:通过双溶液相 - 反应和容易的oneStep自我模板技术合成具有高导电性的稳定的α-MnO2纳米线@ Nico2O4纳米烷基核异壳异质结构和具有高导电性的3D纳米证N掺杂多孔碳纳蒙。独特的α-MnO2 @ Nico2O4异质结构的特征在于稳定的纳米结构,快电子传输和许多离子扩散通道。电极在10 000次循环后表现出1101f的高比电容和95.8%的循环稳定性。此外,通过引入有利的N原子,该N原子具有速率性能,3D多孔碳提供大的表面积,适当的孔结构和尤其是高电子传导性。 3D n掺杂多孔纳米证的比电容在电流密度下达到100 f g(-1),高达100a的全固态对称超电容器使用α-mnO2制造具有优异的电化学性质的全固态对称超级电容器NicO2O4核 - 壳异质结构作为正极,3D n掺杂多孔纳米碳作为负电极,以及Paak / Koh凝胶作为固态电解质。超级电容器演示了1.7V的扩展工作电位,最大能量密度为46.2WH千克(-1),最大功率密度为15.3kW千克(-1),2000次循环后的90%良好的电容保留。

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