Huangpu Hydrogen Energy Innovation Center/Guangzhou Key Laboratory for Clean Energy and Materials, School of Chemistry and Chemical Engineering, Guangzhou University, Guangzhou 510006, P. R. China.
National Engineering Research Center of Paper-making and Pollution Control, School of Light Industry and Engineering, South China University of Technology, Guangzhou 510640, P. R. China.
ACS Appl Mater Interfaces. 2023 May 3;15(17):21585-21594. doi: 10.1021/acsami.3c00102. Epub 2023 Apr 20.
Lithium-sulfur (Li-S) batteries have high theoretical energy density but low sulfur utilization due to the inherent insulating nature of sulfur and the shuttle effect of polysulfides. Herein, the CO-activation carbon paper was prepared by poly(-phenylenebenzobisoxazole) (PBO) nanofiber and was first applied as an interlayer for efficiently alleviating the shuttle effect of polysulfides in Li-S batteries. This interlayer exhibits good flexibility and strength with rich -C═O and -COOH functional groups on the three-dimensional porous structure, which improves chemical adsorption on LiS species and ion rapid diffusion via interconnected diffusion channels and thus enhances the electrochemical kinetics. The initial specific capacity is 1367.4 mAh g and remains 999.8 mAh g after 200 cycles at 0.2C and 780.1 mAh g at 5C, and the Coulombic efficiency is high, up to 99.8%, which is much better than that for the carbon paper without CO activation. The highly conductive flexible PBO carbon paper may bring breakthroughs in performance and thus lead to more practical applications of Li-S batteries.
锂硫(Li-S)电池具有高的理论能量密度,但由于硫的固有绝缘性质和多硫化物的穿梭效应,其硫利用率较低。本文通过聚对亚苯基苯并二恶唑(PBO)纳米纤维制备了 CO 活化碳纸,并首次将其用作中间层,以有效地缓解 Li-S 电池中多硫化物的穿梭效应。该中间层具有良好的柔韧性和强度,在三维多孔结构上具有丰富的-C═O 和-COOH 官能团,通过相互连接的扩散通道提高了对 LiS 物种的化学吸附和离子快速扩散,从而增强了电化学动力学。初始比容量为 1367.4 mAh g,在 0.2C 下循环 200 次后仍保持 999.8 mAh g,在 5C 下为 780.1 mAh g,库仑效率高达 99.8%,明显优于未经 CO 活化的碳纸。高导电性的柔性 PBO 碳纸可能在性能方面带来突破,从而推动 Li-S 电池的更实际应用。