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首页> 外文期刊>Journal of Applied Physics >Engineering of high performance supercapacitor electrode based on Fe-Ni/Fe_2O_3-NiO core/shell hybrid nanostructures
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Engineering of high performance supercapacitor electrode based on Fe-Ni/Fe_2O_3-NiO core/shell hybrid nanostructures

机译:基于Fe-Ni / Fe_2O_3-NiO核/壳杂化纳米结构的高性能超级电容器电极工程

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摘要

The present work reports on fabrication and supercapacitor applications of a core/shell Fe-Ni/Fe_2O_3-NiO hybrid nanostructures (HNs) electrode. The core/shell Fe-Ni/Fe_2O_3-NiO hybrid nanostructures have been fabricated through a two step method (nanowire fabrication and their controlled oxidation). The 1D hybrid nanostructure consists of highly porous shell layer (redox active materials NiO and Fe_2O_3) and the conductive core (FeNi nanowire). Thus, the highly porous shell layer allows facile electrolyte diffusion as well as faster redox reaction kinetics; whereas the conductive FeNi nanowire core provides the proficient express way for electrons to travel to the current collector, which helps in the superior electrochemical performance. The core/shell Fe-Ni/ Fe_2O_3-NiO hybrid nanostructures electrode based supercapacitor shows very good electrochemical performances in terms of high specific capacitance nearly 1415 F g~(-1) at a current density of 2.5 A g~(-1), excellent cycling stability and rate capability. The high quality electrochemical performance of core/shell hybrid nanostructures electrode shows its potential as an alternative electrode for forthcoming supercapacitor devices.
机译:本工作报告了核/壳Fe-Ni / Fe_2O_3-NiO混合纳米结构(HNs)电极的制造和超级电容器应用。核/壳Fe-Ni / Fe_2O_3-NiO杂化纳米结构已通过两步法(纳米线制备及其受控氧化)制备。一维杂化纳米结构由高度多孔的壳层(氧化还原活性材料NiO和Fe_2O_3)和导电芯(FeNi纳米线)组成。因此,高度多孔的壳层允许容易的电解质扩散以及更快的氧化还原反应动力学。导电的FeNi纳米线芯为电子向集电器的传输提供了一种有效的表达方式,这有助于实现优异的电化学性能。基于核/壳Fe-Ni / Fe_2O_3-NiO杂化纳米结构电极的超级电容器在电流密度为2.5 A g〜(-1)时具有接近1415 F g〜(-1)的高比电容,显示出非常好的电化学性能,出色的循环稳定性和速率能力。核/壳混合纳米结构电极的高质量电化学性能显示出其作为即将到来的超级电容器器件的替代电极的潜力。

著录项

  • 来源
    《Journal of Applied Physics 》 |2015年第10期| 105101.1-105101.8| 共8页
  • 作者单位

    Department of Condensed Matter Physics and Material Sciences, S. N. Bose National Centre for Basic Sciences, Block JD, Sector Ⅲ, Salt Lake City, Kolkata 700098, India;

    Department of Condensed Matter Physics and Material Sciences, S. N. Bose National Centre for Basic Sciences, Block JD, Sector Ⅲ, Salt Lake City, Kolkata 700098, India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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