Xue Chuanjiao, Zhang Xue, Wang Shuo, Li Liangliang, Nan Ce-Wen
State Key Laboratory of New Ceramics and Fine Processing, School of Materials Science and Engineering, Tsinghua University, Beijing 100084, China.
ACS Appl Mater Interfaces. 2020 Jun 3;12(22):24837-24844. doi: 10.1021/acsami.0c05643. Epub 2020 May 20.
Ionic conducting polymer electrolytes for solid-state lithium-ion batteries have attracted ever-increasing attention because of their decent ionic conductivity, flexibility, no liquid leakage, and good processability. Poly(vinylidene fluoride) (PVDF)-based polymer electrolytes have recently stood out among the polymer electrolytes due to their high room temperature ionic conductivity. However, the interface between PVDF-based polymer electrolytes and lithium metal decays over time until the batteries break down. Here, we introduce a small amount of poly(acrylic acid) (PAA) into a PVDF-based polymer electrolyte and synthesize an organic-organic composite electrolyte that alleviates the interfacial reaction with lithium metal, which shows great superiority over other modification methods such as coating. The cycle life of lithium symmetric cells is prolonged from 130 to 850 h at 0.44 mA cm due to the effective suppression of interfacial reaction. The much more stable interface also enables excellent cycle performance in a solid-state LiCoO||Li cell at 30 °C with a capacity decay of 0.03% per cycle for 1000 cycles, which is much lower than that of a cell without blending PAA (0.13% per cycle for only 450 cycles). The results would shed light on the applications of PVDF-based polymer electrolytes in solid-state lithium metal batteries.
用于固态锂离子电池的离子导电聚合物电解质因其良好的离子导电性、柔韧性、无漏液性和良好的加工性能而受到越来越多的关注。基于聚偏氟乙烯(PVDF)的聚合物电解质由于其较高的室温离子导电性,最近在聚合物电解质中脱颖而出。然而,基于PVDF的聚合物电解质与锂金属之间的界面会随着时间而衰减,直到电池失效。在此,我们将少量聚丙烯酸(PAA)引入基于PVDF的聚合物电解质中,合成了一种有机-有机复合电解质,该电解质减轻了与锂金属的界面反应,与其他改性方法(如涂层)相比显示出巨大优势。由于有效抑制了界面反应,锂对称电池在0.44 mA cm下的循环寿命从130小时延长至850小时。在30°C的固态LiCoO||Li电池中,更稳定的界面也实现了优异的循环性能,1000次循环中容量衰减为每循环0.03%,远低于未混合PAA的电池(仅450次循环时每循环0.13%)。这些结果将为基于PVDF的聚合物电解质在固态锂金属电池中的应用提供启示。