Lei Chengjun, Zhou Tiankun, Zhang Mingjie, Liu Tingting, Xu Chen, Wang Rui, He Xin, Liang Xiao
State Key Laboratory of Chem/Bio-Sensing and Chemometrics, Joint International Research Laboratory of Energy Electrochemistry, College of Chemistry and Chemical Engineering, Hunan University, Changsha, 410082, China.
Adv Sci (Weinh). 2024 Sep;11(36):e2405482. doi: 10.1002/advs.202405482. Epub 2024 Jul 29.
Solid polymer electrolytes (SPEs) are pivotal in advancing the practical implementation of all-solid-state batteries. Poly(1,3-dioxane) (PDOL)-based electrolytes have attracted significant attention due to the pseudo-high conductivity achieved through sophisticated in situ polymerization methods; however, such PDOL-based electrolytes present challenges of crystallization over time and monomers residual during processing. In this study, integrating LiTFSI and LiDFOB as a universal copolymerization strategy for developing high-performance PDOL electrolytes with a wide range of epoxy crosslinkers is proposed. It is discovered that this approach leverages the protective effects of TFSI anions on the boron active center and catalyzes polymer chain growth via crosslinking. The homogenously crosslinked (benzene-centered) PDOL electrolyte exhibits remarkable thermo-mechanical stability (up to 100 °C), high ion migration number (t = 0.42), a wide electrochemical window (≈5.0 V vs Li/Li), and high ionic conductivity (4.5×10 S cm). Notably, the crosslinked PDOL electrolyte is in the all-solid-state with minimal monomer/oligomer residual, exhibiting no crystallization during relaxation, delivering a robust performance in all-solid-state lithium metal batteries.
固态聚合物电解质(SPEs)对于推进全固态电池的实际应用至关重要。基于聚(1,3 - 二氧戊环)(PDOL)的电解质由于通过复杂的原位聚合方法实现了伪高电导率而备受关注;然而,这种基于PDOL的电解质存在随着时间结晶以及加工过程中单体残留的问题。在本研究中,提出将双(三氟甲基磺酰)亚胺锂(LiTFSI)和二氟草酸硼酸锂(LiDFOB)整合作为一种通用的共聚策略,用于开发具有多种环氧交联剂的高性能PDOL电解质。研究发现,这种方法利用了TFSI阴离子对硼活性中心的保护作用,并通过交联催化聚合物链的生长。均匀交联的(以苯为中心的)PDOL电解质表现出显著的热机械稳定性(高达100°C)、高离子迁移数(t = 0.42)、宽电化学窗口(相对于Li/Li约为5.0 V)以及高离子电导率(4.5×10 S cm)。值得注意的是,交联的PDOL电解质处于全固态,单体/低聚物残留极少,在松弛过程中不结晶,在全固态锂金属电池中表现出强劲的性能。