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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Sulfur-functionalized vanadium carbide MXene (V2CS2) as a promising anchoring material for lithium-sulfur batteries
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Sulfur-functionalized vanadium carbide MXene (V2CS2) as a promising anchoring material for lithium-sulfur batteries

机译:硫磺官能化的碳化钒MxENE(V2CS2)作为锂 - 硫电池的有望锚固材料

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摘要

The development of lithium-sulfur (Li-S) batteries is hindered by capacity loss due to lithium polysulfide (LIPS) dissolution into electrolyte solutions (known as the "shuttle effect"). MXenes with excellent electrical conductivity, high mechanical strength and multiple possible active two-dimensional surface terminations are attracting much attention as anchoring materials of Li-S batteries. Here, the S-functionalized V2C (V2CS2) is designed and demonstrated to have not only dynamic and thermal stability, but also metallic character. Compared with bare V2C and V2CO2, V2CS2 exhibits a moderate adsorption effect to suppress the "shuttle effect" and can preserve the structure of LIPSs without any decomposition. Moreover, the metallic properties of V2CS2 are maintained after LIPSs are adsorbed, which can promote the electrochemical activity during the charge and discharge process. The low energy barriers of Li2S decomposition and Li diffusion on the V2CS2 surface promise the phase transformation of LIPSs and assist the electrochemical process. Based on these remarkable results, we can conclude that V2CS2 is a promising anchoring material for lithium-sulfur batteries. Our work may also inspire the exploration of other MXenes and new surface functionalization methods to improve the performance of MXenes as host materials for high performance Li-S batteries.
机译:由于锂多硫化锂(嘴唇)溶解到电解质溶液(称为“梭效果”),通过容量损失阻碍了锂 - 硫(LI-S)电池的开发。具有优异的导电性,高机械强度和多种可能的二维表面终端的MxENES在Li-S电池的锚固材料中吸引了很多关注。这里,S-官能化V2C(V2CS2)设计并证明不仅具有动态和热稳定性,而且还具有金属性质。与裸v2c和v2co2相比,V2CS2表现出适度的吸附效果,以抑制“梭效果”,并且可以保持唇缘的结构而没有任何分解。此外,在吸附唇缘后维持V2CS2的金属性质,其可以在充电和放电过程中促进电化学活性。 Li2S分解的低能量屏障和锂扩散在V2CS2表面上承诺嘴唇的相变并辅助电化学过程。基于这些显着的结果,我们可以得出结论,V2CS2是锂 - 硫电池的有望的锚固材料。我们的工作还可以激发其他MXENES和新表面官能化方法的探索,以提高MxENES作为高性能LI-S电池的主体材料的性能。

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    Taiyuan Univ Technol Coll Phys &

    Optoelect Taiyuan 030024 Shanxi Peoples R China;

    Taiyuan Univ Technol Coll Phys &

    Optoelect Taiyuan 030024 Shanxi Peoples R China;

    Taiyuan Univ Technol Coll Phys &

    Optoelect Taiyuan 030024 Shanxi Peoples R China;

    Taiyuan Univ Technol Coll Phys &

    Optoelect Taiyuan 030024 Shanxi Peoples R China;

    Taiyuan Univ Technol Coll Phys &

    Optoelect Taiyuan 030024 Shanxi Peoples R China;

    Taiyuan Univ Technol Coll Phys &

    Optoelect Taiyuan 030024 Shanxi Peoples R China;

    Taiyuan Univ Technol Coll Phys &

    Optoelect Taiyuan 030024 Shanxi Peoples R China;

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