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首页> 外文期刊>Electrochimica Acta >A highly Meso@Microporous carbon-supported Antimony sulfide nanoparticles coated by conductive polymer for high-performance lithium and sodium ion batteries
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A highly Meso@Microporous carbon-supported Antimony sulfide nanoparticles coated by conductive polymer for high-performance lithium and sodium ion batteries

机译:用于高性能锂和钠离子电池的导电聚合物涂覆的高度Meso @微孔碳负载碳硫化物纳米颗粒

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摘要

A novel multi-step method that combines solvothermal, sulfidation and polymerization process was utilized to synthesize Antimony Sulfide/Meso@Microporous Carbon nanofibers@polypyrrole (Sb2S3/ MMCN@ppy) composite. As the host, the MMCN is full of microporous and mesoporous naturally, which can prevent the aggregation during the sulfidation process and accelerate the transfer of electron inside the whole composite. Meanwhile, the effective coverage of ppy layer can accommodate the volume changes during cycling and fast the electron transfer on the surface of the composite. Combining those merits, the dual physical barrier composed of MMCN and conductive ppy layer guarantees the ultrastable structure for superior electrochemical performance. When used as an anode for lithium-ion batteries, Sb2S3/MMCN@ppy composite demonstrates the stable electrochemical performance with an enhanced lithium-storage capability. Impressively, even at the high current density of 1000 mA g(-1), a specific reversible capacity about 556 mA h g(-1) can be delivered after 300 long cycles. In addition, Sb2S3/MMCN@ppy composite also displays the outstanding stability sodium-storage property in sodium-ion batteries (269 mAh g(-1) at 1000 mA g(-1) after 300 long cycles). The results show that this product may be considered as a promising anode material for advanced LIBs and SIBs. (C) 2019 Elsevier Ltd. All rights reserved.
机译:一种新颖的多步方法,该方法结合了溶剂热,硫化和聚合过程用于合成硫化锑/内消旋@微孔碳纳米纤维@聚吡咯(硫化锑/ MMCN @ PPY)复合物。作为宿主,MMCN充满了微孔和中孔的自然,可以防止硫化过程中的聚集并加速整个复合材料内的电子转移。同时,PPY层的有效覆盖可以在循环期间容纳体积变化,并在复合材料表面上快速电子转移。组合那些优点,由MMCN和导电PPY层组成的双物理屏障保证了用于卓越的电化学性能的无稳结构。当用作锂离子电池的阳极使用时,硫化锑/ MMCN @ PPY复合证明具有增强的锂存储能力的稳定的电化学性能。令人印象深刻地,即使在1000mA g(-1)的高电流密度,也可以在300次长循环后递送约556mA H(-1)的特定可逆容量。此外,SB2S3 / MMCN @ PPY复合材料还在300次长循环后在1000mA G(-1)时显示出钠离子电池(269mAhg(-1)的优异稳定性钠储存性能。结果表明,该产品可被认为是用于高级LIBS和SIB的有前途的阳极材料。 (c)2019 Elsevier Ltd.保留所有权利。

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