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首页> 外文期刊>Advanced energy materials >Metal–Organic Framework Derived Honeycomb Co_9S_8@C Composites for High-Performance Supercapacitors
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Metal–Organic Framework Derived Honeycomb Co_9S_8@C Composites for High-Performance Supercapacitors

机译:高性能超级电容器用金属有机框架衍生的蜂窝状Co_9S_8 @ C复合材料

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摘要

Unique nanostructures always lead to extraordinary electrochemical energy storage performance. Here, the authors report a new strategy for using Metal-organic frameworks (MOFs) derived cobalt sulfide in a carbon matrix with a 3D honeycombed porous structure, resulting in a high-performance supercapacitor with unrivalled capacity of approximate to 1887 F g(-1) at the current density of 1 A g(-1). The honeycomb-like structure of Co9S8@C composite is loosely adsorbed, with plentiful surface area and high conductivity, leading to improved Faradaic processes across the interface and enhanced redox reactions at active Co9S8 sites. Therefore, the heterostructure-fabricated hybrid supercapacitor, using activated carbon as the counter electrode, demonstrates a high energy density of 58 Wh kg(-1) at the power density of 1000 W kg(-1). Even under an ultrahigh power density of 17 200 W kg(-1), its energy density maintains approximate to 38 Wh kg(-1). The hybrid supercapacitor also exhibits suitable cycling stability, with approximate to 90% capacity retention after 10 000 continuous cycles at the current density of 5 A g(-1). This work presents a practical method for using MOFs as sacrificial templates to synthesize metal-sulfides for highly efficient electrochemical energy storage.
机译:独特的纳米结构始终带来非凡的电化学能量存储性能。在这里,作者报告了一种新的策略,该策略在具有3D蜂窝状多孔结构的碳基体中使用金属有机框架(MOF)衍生的硫化钴,从而产生了一种高性能超级电容器,其无与伦比的容量接近1887 F g(-1) )在1 A g(-1)的电流密度下。 Co9S8 @ C复合材料的蜂窝状结构被松散地吸附,具有足够的表面积和高电导率,从而导致界面上的法拉第工艺得到改善,并在活性Co9S8位置上增强了氧化还原反应。因此,使用活性炭作为对电极的异质结构混合超级电容器在1000 W kg(-1)的功率密度下显示出58 Wh kg(-1)的高能量密度。即使在17200 W kg(-1)的超高功率密度下,其能量密度仍保持在38 Wh kg(-1)左右。混合超级电容器还表现出合适的循环稳定性,在5A g(-1)的电流密度下进行10 000次连续循环后,具有约90%的容量保持率。这项工作提出了一种实用的方法,可以使用MOF作为牺牲模板来合成金属硫化物,以实现高效的电化学能量存储。

著录项

  • 来源
    《Advanced energy materials 》 |2018年第25期| 1801080.1-1801080.9| 共9页
  • 作者单位

    Huazhong Univ Sci & Technol, Sch Mat Sci & Engn, State Key Lab Mat Proc & Die & Mould Technol, Wuhan 430074, Peoples R China;

    Huazhong Univ Sci & Technol, Sch Mat Sci & Engn, State Key Lab Mat Proc & Die & Mould Technol, Wuhan 430074, Peoples R China;

    Huazhong Univ Sci & Technol, Sch Mat Sci & Engn, State Key Lab Mat Proc & Die & Mould Technol, Wuhan 430074, Peoples R China;

    Huazhong Univ Sci & Technol, Sch Mat Sci & Engn, State Key Lab Mat Proc & Die & Mould Technol, Wuhan 430074, Peoples R China;

    Huazhong Univ Sci & Technol, Sch Mat Sci & Engn, State Key Lab Mat Proc & Die & Mould Technol, Wuhan 430074, Peoples R China;

    Huazhong Univ Sci & Technol, Sch Mat Sci & Engn, State Key Lab Mat Proc & Die & Mould Technol, Wuhan 430074, Peoples R China;

    Huazhong Univ Sci & Technol, Sch Mat Sci & Engn, State Key Lab Mat Proc & Die & Mould Technol, Wuhan 430074, Peoples R China;

    Huazhong Univ Sci & Technol, Sch Mat Sci & Engn, State Key Lab Mat Proc & Die & Mould Technol, Wuhan 430074, Peoples R China;

    Huazhong Univ Sci & Technol, Sch Mat Sci & Engn, State Key Lab Mat Proc & Die & Mould Technol, Wuhan 430074, Peoples R China;

    Huazhong Univ Sci & Technol, Sch Mat Sci & Engn, State Key Lab Mat Proc & Die & Mould Technol, Wuhan 430074, Peoples R China;

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  • 正文语种 eng
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  • 关键词

    Co9S8; energy storage; honeycomb; hybrid supercapacitors; metal-organic frameworks;

    机译:Co9S8;储能;蜂窝;混合超级电容器;金属有机框架;

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