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  • Metal-organic framework derived leaf-like CoSNC nanocomposites for supercapacitor electrodes

    Author(s)
    Wang, Yu
    Du, Qinjie
    Zhao, Haimin
    Hou, Shanshan
    Shen, Yu
    Li, Hongfeng
    Kong, Xueying
    Sun, Wei
    Zhang, Bo
    Li, Sheng
    Huo, Fengwei
    Zhang, Weina
    Griffith University Author(s)
    Li, Sheng
    Year published
    2018
    Metadata
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    Abstract
    The designed construction of micro-/nano-structures and multi-composites on electrodes showed a promising prospect to improve electrochemical properties in supercapacitors. Herein, a facile carbonizing strategy was adopted for fabricating leaf-like CoSNC nanocomposites, which possess both the sheet structure and multi-composites of well-dispersed CoS2 nanoparticles in N-doped carbon frameworks. First, the leaf-like nanocomposites with high aspect ratios effectively shortened the ion/electron transmission paths and exposed more faradaic redox sites. Second, the N-doped carbon frameworks could stabilize the electrode structure ...
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    The designed construction of micro-/nano-structures and multi-composites on electrodes showed a promising prospect to improve electrochemical properties in supercapacitors. Herein, a facile carbonizing strategy was adopted for fabricating leaf-like CoSNC nanocomposites, which possess both the sheet structure and multi-composites of well-dispersed CoS2 nanoparticles in N-doped carbon frameworks. First, the leaf-like nanocomposites with high aspect ratios effectively shortened the ion/electron transmission paths and exposed more faradaic redox sites. Second, the N-doped carbon frameworks could stabilize the electrode structure during charge/discharge processes. Third, the well-dispersed CoS2 nanoparticles could also enhance the electrochemical kinetics. Hence, leaf-like CoSNC nanocomposites as electrode materials exhibited high specific capacitance, good rate capacity and cycling stability.
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    Journal Title
    NANOSCALE
    Volume
    10
    Issue
    37
    DOI
    https://doi.org/10.1039/c8nr04780d
    Subject
    Physical sciences
    Chemical sciences
    Publication URI
    http://hdl.handle.net/10072/383733
    Collection
    • Journal articles

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