Men Xinliang, Deng Teng, Chen Liping, Che Jiangxuan, Wang Jia, Wang Juan
School of Mechanical and Electrical Engineering, Xi'an University of Architecture and Technology, Xi'an, Shaanxi, 710311, China.
Small. 2024 Nov;20(48):e2403576. doi: 10.1002/smll.202403576. Epub 2024 Aug 25.
Lithium-sulfur batteries have emerged as a promising energy storage device due to ultra-high theoretical capacity, but the slow kinetics of sulfur and polysulfide shuttle hinder the batteries' further development. Here, the 10% cobalt-doped pyrite iron disulfide electrocatalyst deposited on acetylene black as a separator coating in lithium-sulfur batteries is reported. The adsorption rate to the intermediate LiS is significantly improved while surface oxidation of FeS is inhibited: iron oxide and sulfate, thus avoiding FeS electrocatalyst deactivation. The electrocatalytic activity has been evaluated in terms of electronic resistivity, lithium-ion diffusion, liquid-liquid, and liquid-solid conversion kinetics. The coin batteries exhibit ultra-long cycle life at 1 C with an initial capacity of 854.7 mAh g and maintained at 440.8 mAh g after 920 cycles. Furthermore, the separator is applied to a laminated pouch battery with a sulfur mass of 326 mg (3.7 mg cm) and retained the capacity of 590 mAh g at 0.1 C after 50 cycles. This work demonstrates that FeS electrocatalytic activity can be improved when Co-doped FeS suppresses surface oxidation and provides a reference for low-cost separator coating design in pouch batteries.
锂硫电池因其超高的理论容量而成为一种很有前景的储能装置,但硫的缓慢动力学和多硫化物穿梭效应阻碍了电池的进一步发展。在此,报道了一种以乙炔黑为载体、10%钴掺杂的黄铁矿型二硫化铁电催化剂,作为锂硫电池隔膜涂层。该催化剂对中间产物LiS的吸附速率显著提高,同时抑制了FeS的表面氧化:生成氧化铁和硫酸盐,从而避免了FeS电催化剂失活。已从电子电阻率、锂离子扩散、液-液和液-固转化动力学方面对其电催化活性进行了评估。该硬币电池在1 C倍率下表现出超长的循环寿命,初始容量为854.7 mAh g,在920次循环后保持在440.8 mAh g。此外,该隔膜应用于硫质量为326 mg(3.7 mg/cm)的层压软包电池,在0.1 C倍率下经过50次循环后容量保持在590 mAh g。这项工作表明,钴掺杂的FeS在抑制表面氧化时可以提高其电催化活性,并为软包电池低成本隔膜涂层设计提供了参考。