Choudhury S, Azizi M, Raguzin I, Göbel M, Michel S, Simon F, Willomitzer A, Mechtcherine V, Stamm M, Ionov L
Leibniz-Institut für Polymerforschung Dresden e.V., Hohe Str. 6, 01069 Dresden, Germany.
Phys Chem Chem Phys. 2017 May 10;19(18):11239-11248. doi: 10.1039/c7cp00310b.
In this paper we systematically investigated effect of separator morphology on the performance of Li-S batteries. We tested two kinds of commercially available non-woven fibrous separators made of polypropylene in conjunction with trilayer PP/PE/PP porous separator. Among the non-woven separators, the fibers of the separator of first kind are rough and more acidic than the fibers of the separator of second art, which are smooth. It was found that batteries with smooth separator demonstrate higher Coulombic efficiency, higher charging/discharging capacity and better cycling stability. We attribute better performance of batteries with smooth fibers of separators to lower acidity than that of rough fibers. We believe that negatively charged polysulfides are unable to adsorb on more acidic rough fibers and diffuse readily to lithium electrode. In contrast, polysulfides are able to adsorb on the surface of less acidic smooth fibers that reduces their polysulfides shuttle and rapid decay of battery capacity. Strategic deployment of non-woven Freudenberg and Celgard separator in combination leads to high active mass utilization, superior wettability, reduced short circuit tendency caused by dendritic growth and slower capacity decay.
在本文中,我们系统地研究了隔膜形态对锂硫电池性能的影响。我们测试了两种由聚丙烯制成的商用非织造纤维隔膜,并将其与三层PP/PE/PP多孔隔膜结合使用。在非织造隔膜中,第一种隔膜的纤维粗糙,比第二种隔膜(其纤维光滑)的纤维酸性更强。研究发现,使用光滑隔膜的电池具有更高的库仑效率、更高充电/放电容量和更好的循环稳定性。我们将使用光滑纤维隔膜的电池性能更好归因于其酸度低于粗糙纤维隔膜。我们认为带负电荷的多硫化物无法吸附在酸性更强的粗糙纤维上,并容易扩散到锂电极。相比之下,多硫化物能够吸附在酸性较弱的光滑纤维表面,这减少了它们的多硫化物穿梭现象以及电池容量的快速衰减。将弗洛登伯格和Celgard非织造隔膜组合进行策略性部署可实现高活性物质利用率、卓越的润湿性、降低由枝晶生长引起的短路倾向以及减缓容量衰减。