Pure cellulose nanofiber separator with high ionic conductivity and cycling stability for lithium-ion batteries

热稳定性 分离器(采油) 电解质 材料科学 化学工程 离子电导率 纳米纤维 纤维素 聚烯烃 润湿 化学 复合材料 电极 物理 物理化学 图层(电子) 工程类 热力学
作者
Nan Wei,Wenyong Liu,Haiyang Liao,Zhihan Li,Yi Chen,Guangsheng Zeng
出处
期刊:International Journal of Biological Macromolecules [Elsevier]
卷期号:250: 126078-126078 被引量:2
标识
DOI:10.1016/j.ijbiomac.2023.126078
摘要

Conventional polyolefin separators are constrained by poor electrolyte wettability, inferior thermal stability, and low ionic conductivity, which seriously restrict their application in high-performance lithium-ion batteries (LIBs). Herein, cellulose nanofiber (CNF) as the matrix and tert-butyl alcohol (TBA) as the dispersion medium were used to prepare the pure CNF separators for LIBs by a facile filtration method. The effects of the drying temperature on the pore structure, electrolyte wettability, mechanical properties, thermal stability, and ionic conductivity of the separators were comprehensively investigated. The results showed that the freeze-dried separator at -80 °C with TBA as the dispersion medium (TBA-FD) had the best overall performance, with the porosity and electrolyte uptake up to 70.8 % and 296 %, respectively, as well as the ionic conductivity up to 1.90 mS/cm. The CNF separators had no apparent thermal shrinkage at 160 °C, illustrating good thermal stability. Moreover, the LiFePO4/lithium metal battery assembled with the TBA-HD (tert-butyl alcohol as the dispersion medium for heat-drying at 80 °C) and TBA-FD separators displayed superior cycling stability (with a capacity retention rate up to 97.5 % and 96.4 %, respectively) and rate performance. The pure CNF separators with good performance prepared by the facile method are greatly promising for high-performance LIBs.
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