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Graphene‐Like Carbon Film Wrapped Tin (II) Sulfide Nanosheet Arrays on Porous Carbon Fibers with Enhanced Electrochemical Kinetics as High‐Performance Li and Na Ion Battery Anodes

机译:石墨烯样碳膜包裹锡(II)硫化物纳米薄膜阵列,多孔碳纤维,具有增强的电化学动力学作为高性能Li和Na离子电池阳极

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摘要

Abstract SnS, is a promising anode material for lithium ion batteries (LIBs) and sodium ion batteries (SIBs), however, undergoes poor cyclic lifespan due to its huge volume changes and bad electroconductivity. Here, a modified CVD method is used to directly grow graphene‐like carbon film on the surface of SnS nanosheet arrays which are supported by Co‐, N‐modified porous carbon fibers (CCF@SnS@G). In the strategy, the SnS nanosheet arrays confined into the integrated carbon matrix containing porous carbon fibers and graphene‐like carbon film, perform a greatly improved electrochemical performance. In situ TEM experiments reveal that the vertical graphene‐like carbon film can not only protect the SnS nanosheet from destruction well and enhance the conductivity, but also transforms SnS nanosheet into ultrafine nanoparticles to promote the electrochemical kinetics. Systematic electrochemical investigations exhibit that the CCF@SnS@G electrode delivers a stable reversible capacity of 529 mAh g−1 at a high current density of 5 A g−1 for LIBs and 541.4 mAh g−1 at 2 A g−1 for SIBs, suggesting its good potential for anode electrodes.
机译:抽象的SnS,是用于锂离子电池(LIBS)和钠离子电池(SIB)的一个有前途的负极材料,但是,经过差环状寿命由于其巨大的体积变化和不良导电性。在此,改性CVD方法用于直接生长石墨烯状碳薄膜,其是由CO - , - 支持的纳米片的SnS阵列的表面上的N-改性的多孔碳纤维(CCF @ @的SnS G)。在策略,所述SNS纳米片阵列局限到含有多孔碳纤维和集成碳基体石墨烯状碳膜,执行大大改善电化学性能。原位TEM实验显示,垂直石墨烯状碳薄膜不仅可以保护免遭破坏的SnS纳米片阱和增强导电性,而且变换的SnS纳米片为超细纳米颗粒以促进电化学动力学。系统的电化学研究表现出的CCF @的SnS @ģ电极G-1 5 A的高电流密度提供529毫安时的稳定的可逆容量G-1为库和541.4毫安在2A G-1 G-1的SIB ,这表明其为阳极电极良好潜力。

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