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Nitrogen-doped carbon integrated nickel-cobalt metal phosphide marigold flowers as a high capacity electrode for hybrid supercapacitors

机译:氮掺杂的碳一体化镍 - 钴金属磷化物万寿菊作为杂交超级电容器的高容量电极

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摘要

Metal-organic frameworks (MOFs) serve as expedient self-templated precursors to derive hybrid materials with various functionalities. This study develops a bimetallic MOF-derived approach for the facile synthesis of nitrogen-doped carbon integrated nickel-cobalt mixed metal phosphide (NiCoP/NC) using a controlled experimental procedure for supercapacitors. Here, the nitrogen-doped carbon nanosheet functions as a conductive framework and protective layer for NiCoP nanostructures and offers facile pathways for easy charge transfer, abundant surface active sites and improves the stability of the electrode. The marigold flower-like morphology of NiCoP nanostructures stores a large number of ions in their petals and shortens the ion diffusion length. The electrochemical analysis demonstrates that the as-designed NiCoP/NC electrode possesses a high specific capacity of 690.6 mA h g(-1) (6.22 F cm(-2)) at 1 A g(-1), high rate capability and excellent cycling stability. Additionally, a hybrid supercapacitor built with NiCoP/NC and activated carbon as positive and negative electrodes shows a maximum specific energy of 47 W h kg(-1) at a specific power of 1666 W kg(-1) and good capacity retention over 10 000 charge-discharge cycles. The present multicomponent approach combines the virtues of efficient redox chemistries of each element and N-doped carbon providing abundant surface active sites while stabilizing the active electrode material during repeated cycling.
机译:金属 - 有机框架(MOF)用作有利当自模板化的前体,以推导出具有各种功能的混合材料。该研究利用针对超级电容器的受控实验程序开发了用于容易合成氮掺杂碳总体镍混合金属膦(Nicop / NC)的双金属MOF衍生方法。这里,氮气掺杂的碳纳米片用作尼克纳米结构的导电框架和保护层,并提供容易电荷转移,丰富的表面活性位点并提高电极的稳定性途径。 Nicop纳米结构的万寿菊花样形态在其花瓣中储存大量离子并缩短离子扩散长度。电化学分析表明,设计的尼波普/ NC电极具有690.6 mA Hg(-1)的高比容量(6.22f cm(-2)),高速率能力和优异的循环稳定。此外,用NiCOP / NC和活性炭构建的混合超级电容器,作为正电极和负电极,显示器为47WH kg(-1)的最大特定能量,特定功率为1666 W kg(-1),良好的容量保留超过10 000充放电循环。本发明的多组分方法结合了各元素的有效氧化还原化学品的优点和N掺杂的碳提供了丰富的表面活性位点,同时在重复循环期间稳定活性电极材料。

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  • 来源
    《CrystEngComm》 |2020年第38期|共11页
  • 作者单位

    Yonsei Univ Sch Mech Engn Nanoelectro Mech Device Lab Seoul 120749 South Korea;

    Sejong Univ Dept Elect Engn 209 Neungdong Ro Seoul South Korea;

    Yonsei Univ Sch Mech Engn Nanoelectro Mech Device Lab Seoul 120749 South Korea;

    Yonsei Univ Sch Mech Engn Nanoelectro Mech Device Lab Seoul 120749 South Korea;

    Univ Calif Irvine Dept Mech &

    Aerosp Engn 4200 Engn Gateway Irvine CA 92697 USA;

    Univ Calif Irvine Dept Mech &

    Aerosp Engn 4200 Engn Gateway Irvine CA 92697 USA;

    Yonsei Univ Sch Mech Engn Nanoelectro Mech Device Lab Seoul 120749 South Korea;

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

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