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首页> 外文期刊>ACS applied materials & interfaces >Hollow Biphase Cobalt Nickel Perselenide Spheres Derived from Metal Glycerol Alkoxides for High-Performance Hybrid Supercapacitors
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Hollow Biphase Cobalt Nickel Perselenide Spheres Derived from Metal Glycerol Alkoxides for High-Performance Hybrid Supercapacitors

机译:用于高性能杂交超级电容器的金属甘油醇醇衍生自金属甘油醇盐的中空双相钴镍球形

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摘要

Transition-metal selenides (TMSe) incorporate reversible multielectron Faradaic reactions that can deliver high specific capacitance. Unfortunately, they usually exhibit actual capacitance lower than their theoretical value and suffer from sluggish kinetics, which do not satisfy the demands of hybrid supercapacitors (HSCs), due to poor electron-transmission capability and inferior ion-transport rate. Herein, a kind of hollow biphase and bimetal cobalt nickel perselenide composed of metastable marcasite-type CoSe_(2) (m-CoSe_(2)) and stable pyrite-type NiCoSe_(4) (p-NiCoSe_(4)) is synthesized with metal glycerol alkoxide as precursors by regulating the Ni/Co ratios. This unique hollow biphase structure and bimetallic synergistic effect serves to boost electron-transmission capability and accelerate the ion/electron transfer rate, delivering an excellent specific capacitance of 1008 F g~(–1) at 0.5 A g~(–1) and a high discharge rate capability of 859 F g~(–1) at 20 A g~(–1). The capacitance remains around 80% of the initial capacitance after 5000 cycles. Consequently, a HSC based on the cobalt nickel perselenide cathode and a hierarchical porous carbon anode reveals a maximum energy density of 34.8 W h kg~(–1) and a maximum power density of 7272 W kg~(–1). This polymorphic bimetallic phase engineering provides an advanced and effective guidance for TMSe with high electrochemical properties.
机译:过渡金属硒化物(TMSe)包含可逆多电子法拉第反应,可提供高比电容。不幸的是,由于电子传输能力差和离子传输速率低,它们通常表现出低于理论值的实际电容和缓慢的动力学,不能满足混合超级电容器(HSC)的要求。本文以金属甘油醇盐为前驱体,通过调节Ni/Co比,合成了一种由亚稳的马卡西石型CoSe_2(m-CoSe_2))和稳定的黄铁矿型NiCoSe_4(p-NiCoSe_4))组成的空心双相双金属钴镍烯化物。这种独特的空心两相结构和双金属协同效应可提高电子传输能力,加速离子/电子转移速率,在0.5 A g~(-1)下提供1008 F g~(-1)的优良比电容,在20 A g~(-1)下提供859 F g~(-1)的高放电速率能力。5000次循环后,电容保持在初始电容的80%左右。因此,基于珀尔烯化钴镍阴极和分级多孔碳阳极的HSC的最大能量密度为34.8 W h kg~(-1),最大功率密度为7272 W kg~(-1)。这种多晶双金属相工程为具有高电化学性能的TMSe提供了先进而有效的指导。

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  • 来源
    《ACS applied materials & interfaces》 |2021年第10期|共10页
  • 作者单位

    State Key Laboratory of Chemical Resource Engineering Beijing Key Laboratory of Electrochemical Process and Technology for Materials Beijing University of Chemical Technology;

    State Key Laboratory of Chemical Resource Engineering Beijing Key Laboratory of Electrochemical Process and Technology for Materials Beijing University of Chemical Technology;

    State Key Laboratory of Chemical Resource Engineering Beijing Key Laboratory of Electrochemical Process and Technology for Materials Beijing University of Chemical Technology;

    State Key Laboratory of Chemical Resource Engineering Beijing Key Laboratory of Electrochemical Process and Technology for Materials Beijing University of Chemical Technology;

    State Key Laboratory of Chemical Resource Engineering Beijing Key Laboratory of Electrochemical Process and Technology for Materials Beijing University of Chemical Technology;

    State Key Laboratory of Chemical Resource Engineering Beijing Key Laboratory of Electrochemical Process and Technology for Materials Beijing University of Chemical Technology;

    State Key Laboratory of Chemical Resource Engineering Beijing Key Laboratory of Electrochemical Process and Technology for Materials Beijing University of Chemical Technology;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    cobalt nickel perselenide; hollow spheres; biphase; hybrid supercapacitors; energy storage;

    机译:珀尔烯化钴镍;空心球;双相;混合超级电容器;储能;

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