Liu Xue, He Qiu, Liu Jinshuai, Yu Ruohan, Zhang Yuanyuan, Zhao Yan, Xu Xu, Mai Liqiang, Zhou Liang
State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, Wuhan University of Technology, Wuhan, Hubei 430070, China.
College of Materials Science and Engineering, Sichuan University, Chengdu, Sichuan 610065, China.
ACS Appl Mater Interfaces. 2023 Feb 22;15(7):9439-9446. doi: 10.1021/acsami.2c21620. Epub 2023 Feb 9.
Lithium-sulfur (Li-S) batteries are promising for energy storage, especially in the era of carbon neutrality. Nonetheless, the sluggish kinetics of converting soluble lithium polysulfides into solid lithium sulfide impedes its development. In this work, we design Fe and Co dual single-atom moieties anchored on N-doped multilayer graphene (FeCoNGr) as a catalytic sulfur cathode host for Li-S batteries. With an efficient catalytic role in converting soluble lithium polysulfides into solid LiS, the FeCoNGr-based Li-S cell demonstrates a capacity of 878.7 mA h g at 0.2 C and retains 77.4% of the initial value after 100 cycles. The first and retained capacities are ∼1.7 and ∼1.8 times those of the NGr (without single atoms)-based cell, respectively. Theoretical calculations reveal that the Fe-N moiety has a higher binding energy toward low-order lithium polysulfides, while the Co-N moiety has a higher binding energy toward high-order lithium polysulfides. The efficient catalytic conversion of soluble lithium polysulfides into solid lithium sulfides of FeCoNGr plays important roles in outperforming NGr. This work enhances our knowledge on the tandem role of dual single-atom moieties and confirmed the high catalytic efficiency of single-atom catalysts in Li-S batteries.
锂硫(Li-S)电池在能量存储方面具有广阔前景,尤其是在碳中和时代。然而,可溶性多硫化锂转化为固态硫化锂的动力学缓慢阻碍了其发展。在这项工作中,我们设计了锚定在氮掺杂多层石墨烯(FeCoNGr)上的铁和钴双单原子部分作为锂硫电池的催化硫正极主体。基于FeCoNGr的锂硫电池在将可溶性多硫化锂转化为固态LiS方面具有高效催化作用,在0.2 C下展现出878.7 mA h g的容量,100次循环后保留初始值的77.4%。首次和保留容量分别约为基于NGr(无单原子)电池的1.7倍和约1.8倍。理论计算表明,Fe-N部分对低阶多硫化锂具有更高的结合能,而Co-N部分对高阶多硫化锂具有更高的结合能。FeCoNGr将可溶性多硫化锂高效催化转化为固态硫化锂在性能优于NGr方面发挥了重要作用。这项工作增进了我们对双单原子部分串联作用的认识,并证实了单原子催化剂在锂硫电池中的高催化效率。