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Effects of Electrospun Carbon Nanofibers’ Interlayers on High-Performance Lithium–Sulfur Batteries

机译:电纺碳纳米纤维中间层对高性能锂硫电池的影响

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摘要

Two different interlayers were introduced in lithium–sulfur batteries to improve the cycling stability with sulfur loading as high as 80% of total mass of cathode. Melamine was recommended as a nitrogen-rich (N-rich) amine component to synthesize a modified polyacrylic acid (MPAA). The electrospun MPAA was carbonized into N-rich carbon nanofibers, which were used as cathode interlayers, while carbon nanofibers from PAA without melamine was used as an anode interlayer. At the rate of 0.1 C, the initial discharge capacity with two interlayers was 983 mAh g−1, and faded down to 651 mAh g−1 after 100 cycles with the coulombic efficiency of 95.4%. At the rate of 1 C, the discharge capacity was kept to 380 mAh g−1 after 600 cycles with a coulombic efficiency of 98.8%. It apparently demonstrated that the cathode interlayer is extremely effective at shutting down the migration of polysulfide ions. The anode interlayer induced the lithium ions to form uniform lithium metal deposits confined on the fiber surface and in the bulk to strengthen the cycling stability of the lithium metal anode.
机译:在锂硫电池中引入了两种不同的中间层,以提高循环稳定性,其中硫负载量高达阴极总质量的80%。推荐使用三聚氰胺作为富含氮(N)的胺组分,以合成改性聚丙烯酸(MPAA)。将电纺MPAA碳化为富含N的碳纳米纤维,将其用作阴极夹层,而将来自PAA的不含三聚氰胺的碳纳米纤维用作阳极夹层。在0.1 C的速率下,具有两个夹层的初始放电容量为983 mAh g -1 ,并且在以库仑法运行100次后逐渐下降至651 mAh g -1 效率为95.4%。在1C的速率下,在600次循环后,放电容量保持为380mAh g -1 ,库仑效率为98.8%。显然表明,阴极中间层在阻止多硫化物离子的迁移方面非常有效。阳极夹层诱导锂离子形成限制在纤维表面和块体内的均匀锂金属沉积物,以增强锂金属阳极的循环稳定性。

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