State Key Laboratory of Organic-Inorganic Composites, Center for Fire Safety Materials, Beijing University of Chemical Technology, Beijing 100029, PR China.
State Key Laboratory of Organic-Inorganic Composites, Center for Fire Safety Materials, Beijing University of Chemical Technology, Beijing 100029, PR China.
J Colloid Interface Sci. 2023 Aug;643:223-231. doi: 10.1016/j.jcis.2023.03.203. Epub 2023 Apr 1.
Lithium-sulfur batteries (LSBs) have become highly promising next-generation secondary lithium batteries owing to their high theoretical energy density and abundance of sulfur. Nevertheless, the large-scale application of LSBs is still restricted by the shuttle effect of lithium polysulfide (LiPSs) and the potential fire hazard caused by flammable electrolytes. Herein, three electrolyte-insoluble brominated flame retardants (BFRs) are selected and coated on both sides of commercial polypropylene separators by a facile slurry coating method. The effects of the three BFRs on the safety and electrochemical properties of LSBs are characterized and compared. The coating modification separators greatly improves the flame retardancy of LSBs through radical elimination mechanism. The self-extinguishing time of the electrolyte is reduced from 0.66 s/mg to 0.20 s/mg. Moreover, it is demonstrated that the oxygen (O)-containing BFRs exert a significant adsorption capacity and are more advantageous than O-free BFRs in LSBs. In addition, octabromoether (BDDP) coated separator is more effective in trapping LiPSs than decabromodiphenyl ether (DBDPO) due to higher O content, which can mitigate the shuttle effect and enhance the cycle and rate performance of LSBs. This simple coating strategy for separators with BFRs offers a strongly competitive option for the large-scale production of high-safety LSBs.
锂硫电池(LSBs)由于其高理论能量密度和硫的丰富性,已成为极具前景的下一代二次锂电池。然而,LSBs 的大规模应用仍然受到多硫化锂(LiPSs)的穿梭效应和易燃电解质潜在火灾危险的限制。在此,选择了三种不溶于电解质的溴系阻燃剂(BFRs),并通过简便的浆料涂层法在商业聚丙烯隔板的两侧进行涂覆。三种 BFRs 对 LSBs 的安全性和电化学性能的影响进行了表征和比较。涂层改性隔板通过自由基消除机制大大提高了 LSBs 的阻燃性。电解质的自熄时间从 0.66 s/mg 降低到 0.20 s/mg。此外,研究表明含氧 BFR 比无 O BFR 在 LSBs 中具有更大的吸附容量,更有利。此外,由于高氧含量,八溴醚(BDDP)涂层隔板比十溴二苯醚(DBDPO)更有效地捕获 LiPSs,这可以减轻穿梭效应,提高 LSBs 的循环和倍率性能。这种带有 BFR 的隔板的简单涂层策略为大规模生产高安全性 LSBs 提供了极具竞争力的选择。