Cui Jin, Zhou Zehao, Jia Mengyang, Chen Xin, Shi Chuan, Zhao Ning, Guo Xiangxin
College of Physics, Qingdao University, Qingdao 266071, China.
Polymers (Basel). 2020 Jun 10;12(6):1324. doi: 10.3390/polym12061324.
Composite electrolytes consisting of polymers and three-dimensional (3D) fillers are considered to be promising electrolytes for solid lithium batteries owing to their virtues of continuous lithium-ion pathways and good mechanical properties. In the present study, an electrolyte with polyethylene oxide-lithium (bis trifluoromethyl) sulfate-succinonitrile (PLS) and frameworks of three-dimensional SiO nanofibers (3D SiO NFs) was prepared. Taking advantage of the highly conductive interfaces between 3D SiO NFs and PLS, the total conductivity of the electrolyte at 30 °C was approximately 9.32 × 10 S cm. With a thickness of 27 μm and a tensile strength of 7.4 MPa, the electrolyte achieved an area specific resistance of 29.0 Ω cm. Moreover, such a 3D configuration could homogenize the electrical field, which was beneficial for suppressing dendrite growth. Consequently, Li/LiFePO cells assembled with PLS and 3D SiO NFs (PLS/3D SiO NFs), which delivered an original specific capacity of 167.9 mAh g, only suffered 3.28% capacity degradation after 100 cycles. In particular, these cells automatically shut down when PLS was decomposed above 400 °C, and the electrodes were separated by the solid framework of 3D SiO NFs. Therefore, the solid lithium batteries based on composite electrolytes reported here offer high safety at elevated temperatures.
由聚合物和三维(3D)填料组成的复合电解质因其具有连续的锂离子传导路径和良好的机械性能,被认为是固态锂电池很有前景的电解质。在本研究中,制备了一种含有聚环氧乙烷-硫酸锂(双三氟甲基)-丁二腈(PLS)和三维SiO纳米纤维(3D SiO NFs)框架的电解质。利用3D SiO NFs与PLS之间的高导电界面,该电解质在30℃时的总电导率约为9.32×10 S/cm。该电解质厚度为27μm,拉伸强度为7.4MPa,面积比电阻为29.0Ω·cm。此外,这种三维结构可以使电场均匀化,有利于抑制枝晶生长。因此,用PLS和3D SiO NFs(PLS/3D SiO NFs)组装的Li/LiFePO电池,初始比容量为167.9 mAh/g,100次循环后容量仅衰减3.28%。特别是,当PLS在400℃以上分解时,这些电池会自动关闭,电极被3D SiO NFs的固体框架隔开。因此,本文报道的基于复合电解质的固态锂电池在高温下具有高安全性。