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首页> 外文期刊>Surface & Coatings Technology >High-capacity and cycling-stable polypyrrole-coated MWCNT@polyimide core-shell nanowire anode for aqueous rechargeable sodium-ion battery
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High-capacity and cycling-stable polypyrrole-coated MWCNT@polyimide core-shell nanowire anode for aqueous rechargeable sodium-ion battery

机译:用于水性可充电钠离子电池的高容量和循环稳定的聚吡咯涂层MWCNT /聚酰亚胺核心壳纳米线阳极

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摘要

Aqueous rechargeable sodium-ion batteries (ARSBs) have potential applications in large-scale electric energy storage systems because of the non-flammable and fast charge-discharge performance of the aqueous neutral electrolyte as well as low cost and abundance of sodium resources. Herein, we demonstrate polypyrrole-coated MWCNT@polyimide core-shell nanowire based on pyromellitic dianhydride (PMDA) and 4,4'-oxydianiline (ODA) as a high-capacity and cycling-stable anode material for ARSBs. The as-synthesized MWCNT@polyimide core-shell nanowire exhibits excellent initial discharge capacity as high as 234.9 mA h g(-1), which is 83.6% of the theoretical value, owing to the bicontinuous electron/ion transport pathway. During 100 cycles of charge-discharge, however, the considerable swelling of PMDA-ODA polyimide and structural degradation of core-shell structure result in significant deterioration in the performance from 234.9 to 74.6 mAh g(-1). In order to improve the cycling stability, conducting polypyrrole is coated on its surface. After 100 charge-discharge cycles, the polypyrrole-coated MWCNT@polyimide core-shell nanowire retains a specific capacity of 209.3 mA h g(-1), corresponding to 77.8% of the initial capacity, without any swelling and structural degradation. In impedance study, the changes in the surface and charge transfer resistances during charge-discharge cycles are significantly reduced. As a result, the polypyrrole layer successfully inhibits the structural degradation of the MWCNT@polyimide core-shell nanowire, and consequently improves the cycling performance.
机译:水性可充电钠离子电池(ARSB)由于其水性中性电解质的不易燃性和快速充放电性能,以及低成本和丰富的钠资源,在大型电能存储系统中具有潜在的应用前景。在此,我们展示了聚吡咯涂层MWCNT@polyimide基于均苯四甲酸二酐(PMDA)和4,4'-氧二苯胺(ODA)的核壳纳米线是用于ARSB的高容量和循环稳定的阳极材料。合成产物MWCNT@polyimide由于双连续电子/离子传输路径,核壳纳米线的初始放电容量高达234.9 mA h g(-1),为理论值的83.6%。然而,在100次充放电循环中,PMDA-ODA聚酰亚胺的显著膨胀和核壳结构的结构退化导致性能从234.9 mAh g(-1)显著恶化。为了提高循环稳定性,在其表面涂覆导电聚吡咯。经过100次充放电循环后,聚吡咯涂层MWCNT@polyimide核壳纳米线的比容量为209.3 mA h g(-1),相当于初始容量的77.8%,没有任何膨胀和结构降解。在阻抗研究中,充放电循环过程中表面电阻和电荷转移电阻的变化显著减小。因此,聚吡咯层成功地抑制了聚合物的结构降解MWCNT@polyimide核壳纳米线,从而提高了循环性能。

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