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用于高性能柔性锂硫电池的多硫化物渗透碳布阴极

A Polysulfide-Infiltrated Carbon Cloth Cathode for High-Performance Flexible Lithium-Sulfur Batteries.

作者信息

Song Ji-Yoon, Lee Hyeon-Haeng, Hong Won Gi, Huh Yun Suk, Lee Yun Sung, Kim Hae Jin, Jun Young-Si

机构信息

School of Chemical Engineering, Chonnam National University, 77 Yongbongro, Buk-gu, Gwangju 61186, Korea.

Division of Electron Microscopy Research, Korea Basic Science Institute (KBSI), Daejeon 34133, Korea.

出版信息

Nanomaterials (Basel). 2018 Feb 7;8(2):90. doi: 10.3390/nano8020090.

Abstract

For practical application of lithium-sulfur batteries (LSBs), it is crucial to develop sulfur cathodes with high areal capacity and cycle stability in a simple and inexpensive manner. In this study, a carbon cloth infiltrated with a sulfur-containing electrolyte solution (CC-S) was utilized as an additive-free, flexible, high-sulfur-loading cathode. A freestanding carbon cloth performed double duty as a current collector and a sulfur-supporting/trapping material. The active material in the form of Li₂S₆ dissolved in a 1 M LiTFSI-DOL/DME solution was simply infiltrated into the carbon cloth (CC) during cell fabrication, and its optimal loading amount was found to be in a range between 2 and 10 mg/cm² via electrochemical characterization. It was found that the interwoven carbon microfibers retained structural integrity against volume expansion/contraction and that the embedded uniform micropores enabled a high loading and an efficient trapping of sulfur species during cycling. The LSB coin cell employing the CC-S electrode with an areal sulfur loading of 6 mg/cm² exhibited a high areal capacity of 4.3 and 3.2 mAh/cm² at C/10 for 145 cycles and C/3 for 200 cycles, respectively, with minor capacity loss (<0.03%/cycle). More importantly, such high performance could also be realized in flexible pouch cells with dimensions of 2 cm × 6 cm before and after 300 bending cycles. Simple and inexpensive preparation of sulfur cathodes using CC-S electrodes, therefore, has great potential for the manufacture of high-performance flexible LSBs.

摘要

对于锂硫电池(LSB)的实际应用而言,以简单且经济的方式开发具有高面积容量和循环稳定性的硫正极至关重要。在本研究中,浸润有含硫电解质溶液的碳布(CC-S)被用作无添加剂、柔性、高硫负载的正极。独立的碳布兼具集流体和硫支撑/捕获材料的双重功能。溶解于1 M LiTFSI-DOL/DME溶液中的Li₂S₆形式的活性材料在电池制备过程中简单地浸润到碳布(CC)中,通过电化学表征发现其最佳负载量在2至10 mg/cm²之间。结果发现,交织的碳微纤维在体积膨胀/收缩时保持结构完整性,且嵌入的均匀微孔在循环过程中能够实现硫物种的高负载和有效捕获。采用面积硫负载为6 mg/cm²的CC-S电极的LSB硬币电池在C/10下循环145次以及在C/3下循环200次时,分别表现出4.3和3.2 mAh/cm²的高面积容量,容量损失较小(<0.03%/循环)。更重要的是,在尺寸为2 cm×6 cm的柔性软包电池中,经过300次弯曲循环前后也能实现如此高性能。因此,使用CC-S电极简单且经济地制备硫正极在制造高性能柔性LSB方面具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c10/5853722/8783a8de6c1b/nanomaterials-08-00090-g001.jpg

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