Du Si-Yuan, Ren Guo-Xi, Zhang Nian, Liu Xiao-Song
State Key Laboratory of Functional Materials for Informatics, Shanghai Institute of Microsystem and Information Technology, Chinese Academy of Sciences, Shanghai 200050, China.
University of the Chinese Academy of Sciences, Beijing 100049, China.
ACS Omega. 2022 May 30;7(23):19631-19639. doi: 10.1021/acsomega.2c01338. eCollection 2022 Jun 14.
Composite solid-state electrolytes (CSEs) have been developed rapidly in recent years owing to their high electrochemical stability, low cost, and easy processing characteristics. Most CSEs, however, require high temperatures or flammable liquid solvents to exhibit their acceptable electrochemical performance. Room-temperature all-solid-state batteries without liquid electrolytes are still unsatisfactory and under development. Herein, we have prepared a composite solid electrolyte with excellent performance using a polymer electrolyte poly(vinylidene fluoride-hexafluoropropylene) and an inorganic electrolyte LiLaZrTaO. With the assistance of lithium salts and plasticizers, the prepared CSE achieves a high ionic conductivity of 4.05 × 10 S·cm at room temperature. The Li/CSE/Li symmetric cell can be stably cycled for more than 1000 h at 0.1 mA/cm without short circuits. The all-solid-state lithium metal battery using a LiFePO cathode displays a high discharge capacity of 148.1 mAh·g and a capacity retention of 90.21% after 100 cycles. Moreover, the high electrochemical window up to 4.7 V of the CSE makes it suitable for high-voltage service environments. The all-solid-state battery using a lithium nickel-manganate cathode shows a high discharge specific capacity of 197.85 mAh·g with good cycle performance. This work might guide the improvement of future CSEs and the exploration of flexible all-solid-state lithium metal batteries.
近年来,复合固态电解质(CSEs)因其高电化学稳定性、低成本和易于加工的特性而得到迅速发展。然而,大多数CSEs需要高温或易燃液体溶剂才能展现出可接受的电化学性能。无液体电解质的室温全固态电池仍不尽人意,尚在研发之中。在此,我们使用聚合物电解质聚(偏二氟乙烯-六氟丙烯)和无机电解质LiLaZrTaO制备了一种性能优异的复合固态电解质。在锂盐和增塑剂的辅助下,所制备的CSE在室温下实现了4.05×10 S·cm的高离子电导率。Li/CSE/Li对称电池在0.1 mA/cm下可稳定循环1000 h以上而不短路。使用LiFePO阴极的全固态锂金属电池显示出148.1 mAh·g的高放电容量,100次循环后容量保持率为90.21%。此外,CSE高达4.7 V的高电化学窗口使其适用于高压服务环境。使用锂镍锰酸阴极的全固态电池显示出197.85 mAh·g的高放电比容量,具有良好的循环性能。这项工作可能会指导未来CSEs的改进以及柔性全固态锂金属电池的探索。