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一种具有独特电化学性能的新型聚酰亚胺/木质素纳米纤维高性能电纺丝及其作为锂离子电池隔膜的应用。

A novel high-performance electrospun of polyimide/lignin nanofibers with unique electrochemical properties and its application as lithium-ion batteries separators.

作者信息

Song Changyong, Gao Chao, Peng Qinggang, Gibril Magdi E, Wang Xiaohui, Wang Shoujuan, Kong Fangong

机构信息

State Key Laboratory of Biobased Material and Green Papermaking, Key Laboratory of Pulp & Paper Science and Technology of Shandong Province/Ministry of Education, Qilu University of Technology, Shandong Academy of Sciences, Jinan 250353, China.

State Key Laboratory of Biobased Material and Green Papermaking, Key Laboratory of Pulp & Paper Science and Technology of Shandong Province/Ministry of Education, Qilu University of Technology, Shandong Academy of Sciences, Jinan 250353, China.

出版信息

Int J Biol Macromol. 2023 Aug 15;246:125668. doi: 10.1016/j.ijbiomac.2023.125668. Epub 2023 Jul 6.

DOI:10.1016/j.ijbiomac.2023.125668
PMID:37419263
Abstract

Polypropylene is currently one of the most widely used separators in lithium batteries because of its low cost and chemical stability. However, it also has some intrinsic flaws that hamper the battery performance, such as poor wettability, low ionic conductivity, and some safety issues. This work introduces a novel electrospun nanofibrous consisting of polyimide (PI) blended with lignin (L) to serve as a new class of bio-based separators for lithium-ion batteries. The morphology and properties of the prepared membranes were studied in detail and compared with those of a commercial polypropylene separator. Interestingly, the polar groups in lignin promoted the affinity to the electrolytes and improved the liquid absorption properties of the PI-L membrane. Besides, the PI-L separator showed a higher ionic conductivity (1.78 × 10 S/cm) and Li transference number (0.787). Furthermore, the battery's cycle and rate performance improved due to adding of lignin. The capacity retention of the assembled LiFePO | PI-L | Li Battery was 95.1 % after 100 cycles at 1C current density, which was higher than that of the PP (90 %). Based on the results, PI-L, a bio-based battery separator, can potentially replace the current PP separators in lithium metal batteries.

摘要

聚丙烯因其低成本和化学稳定性,目前是锂电池中使用最广泛的隔膜材料之一。然而,它也存在一些内在缺陷,阻碍电池性能,如润湿性差、离子电导率低以及一些安全问题。这项工作介绍了一种新型的电纺纳米纤维,它由聚酰亚胺(PI)与木质素(L)混合而成,用作一类新型的锂离子电池生物基隔膜。详细研究了制备的膜的形态和性能,并与商用聚丙烯隔膜进行了比较。有趣的是,木质素中的极性基团促进了对电解质的亲和力,并改善了PI-L膜的吸液性能。此外,PI-L隔膜显示出更高的离子电导率(1.78×10 S/cm)和锂迁移数(0.787)。此外,由于添加了木质素,电池的循环和倍率性能得到改善。在1C电流密度下循环100次后,组装的LiFePO | PI-L | Li电池的容量保持率为95.1%,高于PP隔膜(90%)。基于这些结果,生物基电池隔膜PI-L有可能取代锂金属电池中目前使用的PP隔膜。

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