Wang Xilong, Cui Xiaogang, He Bin, Zhao Qian, Wang Yujue, Xiao Dan, Meng Yan, Gao Taotao, Li Kui
School of Mechanical Engineering, Chengdu University, Chengdu 610106, PR China.
School of Mechanical Engineering, Chengdu University, Chengdu 610106, PR China; Institute for Advanced Study, Chengdu University, Chengdu 610106, PR China.
J Colloid Interface Sci. 2025 Jan 15;678(Pt C):460-471. doi: 10.1016/j.jcis.2024.09.113. Epub 2024 Sep 14.
The uncontrolled lithium (Li) dendrite growth significantly impacts the safety performance of polymer separators. To mitigate this growth, this study introduces SiN into sulfonated poly(ether Ether Ketone) (SPEEK) and prepares SiN/SPEEK composite separators via electrospinning. At the interface between the SiN/SPEEK separator and the Li anode, the Si nanowires that form impede Li dendrite growth, thereby enhancing the electrochemical performance of lithium-ion batteries (LIBs). The Li deposition test of the 10 % SiN/SPEEK separator can operate for 1000 h without short-circuiting. Additionally, the LiFePO||Li cell with the 10 % SiN/SPEEK separator shows improved initial discharge capacity (157.8 mAh g at 1C) and superior rate performance (125 mAh g at 10C). Moreover, the nano-scale SiN endows the separator with robust thermal and mechanical properties. The FLIR observations reveal that the 10 % SiN/SPEEK separator maintains uniform thermal distribution and structural integrity even at 300 °C, ensuring safe battery operation at high temperatures. The additional load of the 10 % SiN/SPEEK separator can reach 10.2 mN, which enhances the puncture resistance of the separator. This work provides a solid approach for the application of SPEEK as a high-safety and high-rate LIB separator.
不受控制的锂枝晶生长严重影响聚合物隔膜的安全性能。为了抑制这种生长,本研究将SiN引入磺化聚醚醚酮(SPEEK)中,并通过静电纺丝制备了SiN/SPEEK复合隔膜。在SiN/SPEEK隔膜与锂负极之间的界面处,形成的硅纳米线阻碍了锂枝晶的生长,从而提高了锂离子电池(LIB)的电化学性能。10% SiN/SPEEK隔膜的锂沉积测试可运行1000小时而不短路。此外,采用10% SiN/SPEEK隔膜的LiFePO||Li电池表现出改善的初始放电容量(1C下为157.8 mAh g)和优异的倍率性能(10C下为125 mAh g)。此外,纳米级SiN赋予隔膜强大的热性能和机械性能。FLIR观察结果表明,即使在300°C时,10% SiN/SPEEK隔膜仍能保持均匀的热分布和结构完整性,确保电池在高温下安全运行。10% SiN/SPEEK隔膜的额外负载可达10.2 mN,这增强了隔膜的抗穿刺性。这项工作为SPEEK作为高安全性和高倍率LIB隔膜的应用提供了一种可靠的方法。