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首页> 外文期刊>RSC Advances >Influence of morphology of monolithic sulfur-poly(acrylonitrile) composites used as cathode materials in lithium-sulfur batteries on electrochemical performance
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Influence of morphology of monolithic sulfur-poly(acrylonitrile) composites used as cathode materials in lithium-sulfur batteries on electrochemical performance

机译:单铁 - 聚(丙烯腈)复合材料的形态用作电化学性能锂 - 硫电池阴极材料的影响

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摘要

Solvent-induced phase separation (SIPS) and thermally-induced phase separation (TIPS) derived poly(acrylonitrile) (PAN) based monoliths with different morphology and specific surface area were prepared and thermally converted into monolithic sulfur-poly(acrylonitrile) (SPAN) materials for use as active cathode materials in lithium-sulfur batteries. During thermal processing, the macroscopic monolithic structure fully prevailed while significant changes in porosity were observed. Both the monomer content in the precursor PAN-based monoliths and the tortuosity of the final monolithic SPAN materials correlate with the electrochemical performance of the SPAN-based cathodes. Overall, percolation issues predominate. In percolating SPAN-based cathode materials, the specific capacity of the SPAN-based cells increases with decreasing tortuosity. All monolithic SPAN materials provided highly reversible and cycle stable cathodes reaching reversible discharge capacities up to 1330 mA h g(sulfur)(-1) @ 0.25C, 900 mA h g(sulfur)(-1) @ 2C and 420 mA h g(sulfur)(-1) @ 8C.
机译:溶剂诱导的相分离(SIPS)和热致相分离(TIPS)衍生的聚(丙烯腈)(PAN)具有不同的形态,比表面积基于整料的制备和热转换成单片硫 - 聚(丙烯腈)(SPAN)材料用作活性阴极材料中的锂硫电池。在热加工,而没有观察到孔隙率显著变化宏观整体结构完全盛行。无论是在PAN类前体整料的单体含量和最终单片SPAN材料的弯曲度相关与基于SPAN-阴极的电化学性能。总体而言,渗流问题占主导地位。在渗滤基于SPAN的阴极材料中,随弯曲度基于SPAN细胞的增加比容量。所有单片SPAN材料提供高度可逆的和周期稳定阴极到达可逆放电容量高达1330毫安汞柱(硫)( - 1)@ 0.25C,900毫安汞柱(硫)( - 1)@ 2C和420毫安汞柱(硫) (-1)@ 8C。

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  • 来源
    《RSC Advances》 |2019年第13期|共8页
  • 作者单位

    Univ Stuttgart Inst Polymer Chem D-70569 Stuttgart Germany;

    Daimler AG RD EBB HPC X461 D-71059 Sindelfingen Germany;

    Daimler AG RD EBT HPC G012-BB D-71034 Boblingen Germany;

    Univ Stuttgart Inst Polymer Chem D-70569 Stuttgart Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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