Dai Shuqi, Wang Chaozhi, Huang Chongyang, Li Shurong, Xu Yongsheng, Song Yaohao, Zeng Guangjian, Zhu Jie, Sun Taoling, Huang Mingjun
South China Advanced Institute for Soft Matter Science and Technology (AISMST), School of Emergent Soft Matter, South China University of Technology, Guangzhou, 510640, China.
Department of Chemistry, College of Chemistry and Chemical Engineering, Xiamen University, Xiamen, 361005, China.
Macromol Rapid Commun. 2023 Jan;44(1):e2200246. doi: 10.1002/marc.202200246. Epub 2022 May 18.
Lithium-sulfur (Li-S) batteries with high sulfur utilization, long-cycle life, and dendrite-free features hold great promise for the development of next-generation energy storage devices of high energy density. Considerable efforts have been committed to solving the polysulfide shuttle problem toward highly stable Li-S batteries. Here, a unique polymer network containing dually anchored ionic liquids (DA-PIL) is devolped to improve the cycling performance and coulombic efficiency of Li-S batteries. This DA-PIL electrolyte incorporates the amphiphilicity of both the polysulfides anion and lithium cation, creating an ionic function layer on polypropylene separator. Noteworthily, the DA-PIL network is "clean" in the sense that no free ionic specifies are introduced to the electrolyte system. The DA-PIL layer not only enables strong supression against polysulfide shuttling but simultaneously allows fast lithium transportation owing to cooperate electrostatic interaction among anchored cations and anions. The DA-PIL layer functionalized on a polypropylene separator can boost excellent stability of Li-S battery with >1600 h cycling test at 0.25 mA cm . The Li-S cell with DA-PIL layer delivers a higher discharge capacity of 827.4 mAh g at 1C. A discharge capacity of 630.6 mAh g is retained after 1000 cycles.
具有高硫利用率、长循环寿命和无枝晶特性的锂硫(Li-S)电池在开发高能量密度的下一代储能设备方面具有巨大潜力。为了实现高度稳定的锂硫电池,人们已经付出了相当大的努力来解决多硫化物穿梭问题。在此,开发了一种独特的包含双锚定离子液体的聚合物网络(DA-PIL),以提高锂硫电池的循环性能和库仑效率。这种DA-PIL电解质结合了多硫化物阴离子和锂阳离子的两亲性,在聚丙烯隔膜上形成了一个离子功能层。值得注意的是,DA-PIL网络是“纯净的”,因为没有向电解质体系中引入游离离子。DA-PIL层不仅能够强烈抑制多硫化物穿梭,而且由于锚定的阳离子和阴离子之间的协同静电相互作用,同时还能实现快速的锂传输。在聚丙烯隔膜上功能化的DA-PIL层可以提高锂硫电池的稳定性,在0.25 mA cm²的电流密度下进行>1600小时的循环测试。具有DA-PIL层的锂硫电池在1C的电流密度下具有827.4 mAh g的更高放电容量。在1000次循环后仍保留630.6 mAh g的放电容量。