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通过溶剂溶胀的聚环氧乙烷与电极界面接触的准凝胶聚合物电解质用于高性能锂/锂离子电池。

Quasi-Gel Polymer Electrolyte Interfaced with Electrodes through Solvent-Swollen Poly(ethylene oxide) for High-Performance Lithium/Lithium-Ion Batteries.

作者信息

Babu Mohana Priya, Moodakare Sahana B, Vedarajan Raman, Ramanujam Kothandaraman

机构信息

Clean Energy Lab, Department of Chemistry, Indian Institute of Technology (IIT) Madras, Chennai, Tamil Nadu 600036, India.

The Energy Consortium, Indian Institute of Technology (IIT) Madras, Chennai, Tamil Nadu 600036, India.

出版信息

ACS Appl Mater Interfaces. 2024 Aug 28;16(34):45399-45410. doi: 10.1021/acsami.4c06192. Epub 2024 Aug 15.

DOI:10.1021/acsami.4c06192
PMID:39146494
Abstract

Solid polymer electrolytes (SPEs) are regarded as a superior alternative to traditional liquid electrolytes of lithium-ion batteries (LIBs) due to their improved safety features. The practical implementation of SPEs faces challenges, such as low ionic conductivity at room temperature (RT) and inadequate interfacial contact, leading to high interfacial resistance across the electrode and electrolyte interfaces. In this study, we addressed these issues by designing a quasi-gel polymer electrolyte (QGPE), a blend of poly(vinylidene fluoride--hexafluoropropylene) (PVDF-HFP), poly(ethylene oxide) (PEO), and succinonitrile (SN), with the desired mechanical strength, ionic conductivity, and interfacial stability through a simple solution casting technique. The QGPE features a thin solvated PEO layer on its surface, which wets the electrode, reducing the interfacial resistance and ensuring a homogeneous Li-ion flux across the interface. The optimized QGPE exhibits a good lithium-ion conductivity of 1.14 × 10 S cm with a superior lithium-ion transference number of 0.7 at 25 °C. The Li/QGPE/Li symmetric cell exhibits a highly reversible lithium plating/stripping process for over 1300 h with minimal voltage polarization of ∼20 mV. The Li/QGPE/LiFePO full cell demonstrates good rate capability and excellent long-term cycling performance at a 0.1 C rate at 25 °C, maintaining a specific discharge capacity of 148 mAh g over 200 cycles. The effectiveness of QGPE for LIBs is proven using a graphite/QGPE/LiFePO 4 × 4 cm pouch cell, showcasing outstanding flexibility and tolerance against intentional abuse.

摘要

固态聚合物电解质(SPEs)因其安全性的提升,被视为锂离子电池(LIBs)传统液体电解质的优质替代品。SPEs的实际应用面临挑战,如室温下离子电导率低以及界面接触不足,导致电极与电解质界面间的界面电阻高。在本研究中,我们通过设计一种准凝胶聚合物电解质(QGPE)来解决这些问题,该电解质是聚偏氟乙烯 - 六氟丙烯(PVDF - HFP)、聚环氧乙烷(PEO)和丁二腈(SN)的混合物,通过简单的溶液浇铸技术使其具有所需的机械强度、离子电导率和界面稳定性。QGPE表面有一层薄的溶剂化PEO层,可润湿电极,降低界面电阻并确保锂离子在界面上均匀通量。优化后的QGPE在25℃时表现出良好的锂离子电导率,为1.14×10 S cm,锂离子迁移数高达0.7。Li/QGPE/Li对称电池在超过1300小时内呈现高度可逆的锂电镀/剥离过程,电压极化最小,约为20 mV。Li/QGPE/LiFePO全电池在25℃下以0.1 C倍率表现出良好的倍率性能和出色的长期循环性能,在200次循环中保持148 mAh g的比放电容量。使用石墨/QGPE/LiFePO 4×4 cm软包电池证明了QGPE对LIBs的有效性,展示了出色的柔韧性和对故意滥用的耐受性。

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