Judez Xabier, Zhang Heng, Li Chunmei, Eshetu Gebrekidan Gebresilassie, Zhang Yan, González-Marcos José A, Armand Michel, Rodriguez-Martinez Lide M
CIC Energigune , Parque Tecnológico de Álava, Albert Einstein 48, 01510 Miñano, Álava, Spain.
Department of Chemical Engineering, Faculty of Science and Technology, University of the Basque Country UPV-EHU , P.P. Box 644, 48080 Bilbao, Spain.
J Phys Chem Lett. 2017 Aug 3;8(15):3473-3477. doi: 10.1021/acs.jpclett.7b01321. Epub 2017 Jul 13.
Polymer-rich composite electrolytes with lithium bis(fluorosulfonyl)imide/poly(ethylene oxide) (LiFSI/PEO) containing either Li-ion conducting glass ceramic (LICGC) or inorganic AlO fillers are investigated in all-solid-state Li-S cells. In the presence of the fillers, the ionic conductivity of the composite polymer electrolytes (CPEs) does not increase compared to the plain LiFSI/PEO electrolyte at various tested temperatures. The CPE with AlO fillers improves the stability of the Li/electrolyte interface, while the Li-S cell with a LICGC-based CPE delivers high sulfur utilization of 1111 mAh g and areal capacity of 1.14 mAh cm. In particular, the cell performance gets further enhanced when combining these two CPEs (Li | AlO-CPE/LICGC-CPE | S), reaching a capacity of 518 mAh g and 0.53 mAh cm with Coulombic efficiency higher than 99% at the end of 50 cycles at 70 °C. This study shows that the CPEs can be promising electrolyte candidates to develop safe and high-performance all-solid-state Li-S batteries.
在全固态锂硫电池中研究了含有锂离子传导玻璃陶瓷(LICGC)或无机AlO填料的双(氟磺酰)亚胺锂/聚环氧乙烷(LiFSI/PEO)富聚合物复合电解质。在有填料存在的情况下,在不同测试温度下,复合聚合物电解质(CPE)的离子电导率与纯LiFSI/PEO电解质相比并未增加。含AlO填料的CPE提高了锂/电解质界面的稳定性,而基于LICGC的CPE的锂硫电池实现了1111 mAh g的高硫利用率和1.14 mAh cm²的面积容量。特别是,当将这两种CPE(Li | AlO-CPE/LICGC-CPE | S)结合时,电池性能进一步提高,在70°C下50次循环结束时,容量达到518 mAh g和0.53 mAh cm²,库仑效率高于99%。这项研究表明,CPE有望成为开发安全、高性能全固态锂硫电池的电解质候选材料。