Liu Mingquan, Hou Jinli, Xiang Jun, Wang Ying, Shen Xiangqian, Luan Kaijun, Zhang Yingji
School of Materials Science and Engineering, Jiangsu University, Zhenjiang 212013, China.
School of Mathematics and Physics, Jiangsu University of Science and Technology, Zhenjiang 212013, P. R. China.
J Nanosci Nanotechnol. 2019 Sep 1;19(9):5810-5816. doi: 10.1166/jnn.2019.16549.
Non-woven nickel/carbon nanofibers (NW(Ni/C)NFs) are developed using a facile one-pot electrospinning method as a functional interlayer for rechargeable lithium-sulfur (Li-S) batteries. The functional interlayer of NW(Ni/C)NFs is sandwiched between a sulfur cathode and the separator and acts as a shuttle inhibitor to sulfur and polysulfides. Because of the sandwiched structure and the nickel additive, the Li-S cell shows better performance in terms of capacity utilization and reversibility. When the NW(Ni/C)NFs were calcined at 900 °C with 1 g of nickel salt additive, the discharge capacity of the cells was the best, and the initial discharge capacity was 1062 mAh g. With 200 charge-discharge cycles at 1 C, the discharge capacity of the cells remained above 910 mAh g, which is about 85.7% of its initial capacity. The improvement to the cells' electrochemical performance is attributed to the 3D architecture of the NW(Ni/C)NFs as a functional interlayer and to the appropriate amount of nickel addition. This provides a good conductive network with structural stability and the migrating polysulfide reduces the "shuttling phenomenon" during the charge-discharge processes.
采用简便的一锅法静电纺丝工艺制备了非织造镍/碳纳米纤维(NW(Ni/C)NFs),用作可充电锂硫(Li-S)电池的功能中间层。NW(Ni/C)NFs功能中间层夹在硫正极和隔膜之间,作为硫和多硫化物的穿梭抑制剂。由于这种夹层结构和镍添加剂,Li-S电池在容量利用率和可逆性方面表现出更好的性能。当NW(Ni/C)NFs在900℃下与1g镍盐添加剂一起煅烧时,电池的放电容量最佳,初始放电容量为1062mAh/g。在1C下进行200次充放电循环后,电池的放电容量保持在910mAh/g以上,约为其初始容量的85.7%。电池电化学性能的改善归因于NW(Ni/C)NFs作为功能中间层的三维结构以及适量的镍添加。这提供了具有结构稳定性的良好导电网络,迁移的多硫化物减少了充放电过程中的“穿梭现象”。