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用于提高锂离子电池热稳定性和离子传输性能的静电纺MXene/聚酰亚胺纳米纤维复合隔膜

Electrospun MXene/polyimide nanofiber composite separator for enhancing thermal stability and ion transport of lithium-ion batteries.

作者信息

Wu Yitian, Wei Wenhui, Feng Tianxue, Li Wenwen, Wang Xiaoyu, Wu Tao, Zhang Xingshuang

机构信息

Advanced Materials Institute, Qilu University of Technology (Shandong Academy of Sciences), Jinan, China.

出版信息

Front Chem. 2025 Feb 21;13:1555323. doi: 10.3389/fchem.2025.1555323. eCollection 2025.

Abstract

Safety of lithium-ion batteries (LIBs) has garnered significant attention. As an essential component of batteries, the separator plays a crucial role in separating the positive and negative electrodes, preventing short circuits, and allowing ion transport. Therefore, it is necessary to develop a high-performance separator that is both thermally stable and capable of rapid Li transport. Polyimide (PI) is a material with high thermal stability, but low electrolyte wettability and high interfacial resistance of PI restrict its application in high-performance LIBs batteries. MXene possesses excellent mechanical properties and good electrolyte affinity. PI/MXene nanofiber composite separator. Combines the high thermal stability of PI with the superior electrolyte wettability of MXene. It exhibits a high tensile strength of 19.6 MPa, low bulk resistance (2.5 Ω), and low interfacial resistance (174 Ω), as well as a low electrolyte contact angle of 29°, while retaining the high-temperature resistance and flame retardancy of PI. Batteries assembled with this composite separator demonstrated a specific capacity of 111.0 mAh g and a capacity retention rate of 66% at 2C. In long-term cycling tests of LiFePO₄ half-cells at 1C, after 200 charge-discharge cycles, the PI/MXene battery showed a discharge specific capacity of 126.7 mAh g and a capacity retention rate of 91%. Additionally, the battery operated normally at 120°C. The composite separator, by integrating the high thermal stability of PI with the excellent electrolyte wettability and conductivity of MXene, demonstrates significant advantages in enhancing battery safety and cycling performance. Through this composite structure can provide a more reliable and safe solution for high-performance LIBs.

摘要

锂离子电池(LIBs)的安全性已引起广泛关注。作为电池的关键组成部分,隔膜在分隔正负极、防止短路以及允许离子传输方面起着至关重要的作用。因此,开发一种兼具热稳定性和快速锂传输能力的高性能隔膜十分必要。聚酰亚胺(PI)是一种具有高热稳定性的材料,但PI的低电解质润湿性和高界面电阻限制了其在高性能LIBs电池中的应用。MXene具有优异的机械性能和良好的电解质亲和力。PI/MXene纳米纤维复合隔膜结合了PI的高热稳定性和MXene卓越的电解质润湿性。它具有19.6 MPa的高拉伸强度、2.5 Ω的低体积电阻、174 Ω的低界面电阻以及29°的低电解质接触角,同时保留了PI的耐高温性和阻燃性。用这种复合隔膜组装的电池在2C时的比容量为111.0 mAh/g,容量保持率为66%。在LiFePO₄半电池1C的长期循环测试中,经过200次充放电循环后,PI/MXene电池的放电比容量为126.7 mAh/g,容量保持率为91%。此外,该电池在120°C下仍能正常运行。这种复合隔膜通过将PI的高热稳定性与MXene优异的电解质润湿性和导电性相结合,在提高电池安全性和循环性能方面显示出显著优势。通过这种复合结构可为高性能LIBs提供更可靠、安全的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/997d/11885268/afb2d9c07cbf/fchem-13-1555323-g001.jpg

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