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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Co9S8 embedded into N/S doped carbon composites: in situ derivation from a sulfonate-based metal-organic framework and its electrochemical properties
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Co9S8 embedded into N/S doped carbon composites: in situ derivation from a sulfonate-based metal-organic framework and its electrochemical properties

机译:嵌入N / S掺杂碳复合材料中的CO9S8:原位衍生来自基于磺酸盐的金属 - 有机框架及其电化学性能

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摘要

On account of its high theoretical capacity and excellent electrical conductivity, Co9S8 as a promising electrode material in lithium-ion batteries (LIBs) has attracted significant attention. In the present work, a simple one-step route is developed for fabricating cobalt sulfide (Co9S8) nanoparticles embedded into N/S co-doped carbon frameworks (Co9S8/NSC) using a sulfonate-based cobalt metal-organic framework (MOF) as a precursor for the first time, in which decomposition and in situ sulfidation processes are simultaneously executed in the absence of additional sulfur source. As an anode for LIBs, the hybrid composite Co9S8/NSC shows excellent reversible capacity, high rate performance and long-term cycling stability. For instance, a reversible capacity of 1179 mA h g(-1) can be achieved after 200 cycles at a current density of 0.1 A g(-1). When cycled at 2 A g(-1), it also maintains a high specific capacity of 789 mA h g(-1) after 1000 cycles. Such a superior performance may be attributed to its structural advantages that the smaller Co9S8 nanoparticles embedded into N/S co-doped carbon could enhance the active sites, electrical conductivity and cycling stability.
机译:由于其高理论容量和优异的导电性,CO9S8作为锂离子电池(LIBS)中有希望的电极材料引起了显着的关注。在本作工作中,使用磺酸盐的钴金属 - 有机骨架(MOF)制造嵌入N / S共掺杂碳骨架(CO9S8 / NSC)中的钴硫醚(CO9S8)纳米颗粒(CO9S8 / NSC)的简单一步路线。首次前体,其中在不存在额外的硫源的情况下同时执行分解和原位硫化过程。作为LIBS的阳极,杂交复合CO9S8 / NSC显示出优异的可逆容量,高速率性能和长期循环稳定性。例如,在电流密度为0.1Ag(-1)的200个循环之后,可以实现1179mA H(-1)的可逆容量。当在2Ag(-1)时循环时,在1000个循环后,它还保持789 mA H G(-1)的高比容量。这种优异的性能可能归因于其结构优势,即嵌入N / S共掺杂碳的较小CO9S8纳米颗粒可以增强活性位点,导电性和循环稳定性。

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    Fuzhou Univ State Key Lab Photocatalysis Energy &

    Environm Fuzhou 350002 Fujian Peoples R China;

    Fuzhou Univ State Key Lab Photocatalysis Energy &

    Environm Fuzhou 350002 Fujian Peoples R China;

    Fuzhou Univ State Key Lab Photocatalysis Energy &

    Environm Fuzhou 350002 Fujian Peoples R China;

    Fuzhou Univ State Key Lab Photocatalysis Energy &

    Environm Fuzhou 350002 Fujian Peoples R China;

    Fuzhou Univ State Key Lab Photocatalysis Energy &

    Environm Fuzhou 350002 Fujian Peoples R China;

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  • 正文语种 eng
  • 中图分类 工程材料学;
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