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首页> 外文期刊>RSC Advances >Facile preparation of porous sheet-sheet hierarchical nanostructure NiO/Ni-Co-Mn-O(x)with enhanced specific capacity and cycling stability for high performance supercapacitors
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Facile preparation of porous sheet-sheet hierarchical nanostructure NiO/Ni-Co-Mn-O(x)with enhanced specific capacity and cycling stability for high performance supercapacitors

机译:具有增强的特定容量和高性能超级电容器的特定容量和循环稳定性的多孔片材 - 片分层纳米结构NiO / Ni-Co-Mn-O(X)的舒适性

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摘要

NiO, Ni-Co-Mn-O(x)and NiO/Ni-Co-Mn-O(x)on nickel foam substrates were preparedviaa chemical bath deposition-calcination. The thermodynamic behavior was observed by TG/DTA. The chemical structure and composition, phase structure and microstructures were tested by XPS, XRD, FE-SEM and TEM. The electrochemical performance was measured by CV, GCD and EIS. The mechanism for formation and enhancing electrochemical performance is also discussed. Firstly, the precursors such as NiOOH, CoOOH and MnOOH grow on nickel foam substrates from a homogeneous mixed solutionviachemical bath deposition. Thereafter, these precursors are calcined and decomposed into NiO, Co(3)O(4)and MnO(2)respectively under different temperatures in a muffle furnace. Notably, NiO/Ni-Co-Mn-O(x)on nickel foam substrates reveals a high specific capacity with 1023.50 C g(-1)at 1 A g(-1)and an excellent capacitance retention with 103.94% at 5 A g(-1)after 3000 cycles in 2 M KOH, its outstanding electrochemical performance and cycling stability are mainly attributed to a porous sheet-sheet hierarchical nanostructure and synergistic effects of pseudo-capacitive materials and excellent redox reversibility. Therefore, this research offers a facile synthesis route to transition metal oxides for high performance supercapacitors.
机译:NiO,Ni-Co-Mn-O(X)和NiO / Ni-Co-Mn-O(X)在镍泡沫底物上进行了制备卓索化学浴沉积煅烧。通过TG / DTA观察到热力学行为。通过XPS,XRD,Fe-SEM和TEM测试化学结构和组合物,相结构和微观结构。通过CV,GCD和EIS测量电化学性能。还讨论了形成和增强电化学性能的机制。首先,如NiOOH,CoOOH和MnOOH等前体从均相混合溶液化浴沉积中生长在镍泡沫底物上。此后,将这些前体煅烧并分解成NiO,Co(3)O(4)和MNO(2)分别在Muffle炉中的不同温度下。值得注意的是,镍泡沫底物上的NiO / Ni-Co-Mn-O(X)揭示了在1Ag(-1)的1023.50cg(-1)的高比容量,并且优异的电容保持在5 a下103.94% G(1)在2M KOH中3000个循环后,其出色的电化学性能和循环稳定性主要归因于多孔板纸片分层纳米结构和伪电容材料的协同作用和优异的氧化还原可逆性。因此,本研究提供了高性能超级电容器的过渡金属氧化物的容易合成途径。

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  • 来源
    《RSC Advances》 |2020年第38期|共10页
  • 作者单位

    Kunming Univ Sci &

    Technol State Key Lab Complex Nonferrous Met Resources Cl Kunming 650093 Yunnan Peoples R China;

    Kunming Univ Sci &

    Technol State Key Lab Complex Nonferrous Met Resources Cl Kunming 650093 Yunnan Peoples R China;

    Kunming Univ Sci &

    Technol Fac Met &

    Energy Engn Kunming 650093 Yunnan Peoples R China;

    Kunming Univ Sci &

    Technol State Key Lab Complex Nonferrous Met Resources Cl Kunming 650093 Yunnan Peoples R China;

    Kunming Univ Sci &

    Technol Fac Met &

    Energy Engn Kunming 650093 Yunnan Peoples R China;

    Kunming Univ Sci &

    Technol Fac Met &

    Energy Engn Kunming 650093 Yunnan Peoples R China;

    Kunming Univ Sci &

    Technol Fac Met &

    Energy Engn Kunming 650093 Yunnan Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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