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首页> 外文期刊>Nanoscale >Intermetallic SnSb nanodots embedded in carbon nanotubes reinforced nanofabric electrodes with high reversibility and rate capability for flexible Li-ion batteries
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Intermetallic SnSb nanodots embedded in carbon nanotubes reinforced nanofabric electrodes with high reversibility and rate capability for flexible Li-ion batteries

机译:金属间化合物SnSb nanodots嵌入碳碳纳米管增强nanofabric电极高可逆性和速度能力灵活的锂离子电池

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摘要

Tin (Sn) based anode materials have been regarded as promising alternatives for graphite in lithium ion batteries (LIBs) due to their high theoretical specific capacity and conductivity. However, their practical application is severely restrained by the drastic volume variation during cycling processes. Here we report the preparation of intermetallic SnSb nanodots embedded in carbon nanotube reinforced N-doped carbon nanofibers (SnSb-CNTs@NCNFs) as a free-standing and flexible anode for LIBs. In this unique structure, the SnSb nanodots are well protected by the NCNFs and exhibit greatly reduced volume change. The mechanical strength and conductivity of the nanofabric electrode are further improved by the embedded CNTs. Benefiting from these advantages, the SnSb-CNTs@NCNFs anode delivers a high reversible capacity of 815 mA h g(-1) at 100 mA g(-1), a high rate capability (370 mA h g(-1) at 5000 mA g(-1)) and a long cycle life (451 mA h g(-1) after 1000 cycles at 2000 mA g(-1)). When assembled into flexible pouch cells, the full cells based on SnSb-CNTs@NCNFs anodes also exhibit high flexibility and good lithium storage performances.
机译:锡(Sn)基于阳极材料一直认为作为有前途的替代石墨锂离子电池(LIBs)由于其高理论比容量和电导率。然而,他们的实际应用是严重受制于在激烈的体积变化循环过程。金属间化合物的SnSb nanodots嵌入碳纳米管增强n型碳纳米纤维(SnSb-CNTs@NCNFs)作为一个独立的和灵活的阳极填词。SnSb nanodots NCNFs和保护表现出极大地减少了体积变化。机械强度和电导率nanofabric电极进一步提高的嵌入碳纳米管。SnSb-CNTs@NCNFs阳极提供了一个高可逆容量815毫安h g (1) 100 mAg(1),高速率的能力(370 mA h g (1)马5000 g(1))和长循环寿命马(451 hg(1) 1000年以后周期在2000 g(1))。组装成柔性囊细胞,完整的细胞基于SnSb-CNTs@NCNFs阳极表现出高的灵活性和良好的锂存储表演。

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