材料科学
电解质
相容性(地球化学)
阳极
复合数
离子电导率
电化学
化学工程
热稳定性
电导率
聚合物
金属
电极
电化学窗口
离子键合
快离子导体
同种类的
纳米复合材料
色散(光学)
复合材料
作者
Yuhan Bian (14299118),Xinhao Chang (22474674),Yong Wang (12837),Kangwei Hou (17200363),Xiaolin Li (397893),Li Wang (15202),Guangchuan Liang (9375614)
出处
期刊:
[Figshare (United Kingdom)]
日期:2025-11-27
标识
DOI:10.1021/acsaem.5c03435.s001
摘要
The compatibility among the components in composite solid electrolytes (CSEs) plays a crucial role in determining the overall performance of solid-state lithium-ion batteries. To address this deficiency, a series of CSEs were prepared by incorporating Li1.3Al0.3Ti1.7(PO4)3 (LATP) powders into the PVDF/PEO polymer matrix via a solution casting method, with LATP functionalized with vinyltriethoxysilane (VTES) to enhance its interfacial compatibility and dispersion uniformity with the PVDF/PEO matrix. The effect of the VTES content on the physical integrity and electrochemical properties of CSEs was systematically investigated. The results demonstrate that the incorporation of an appropriate amount of VTES significantly enhances the dispersion of LATP within the PVDF/PEO polymer matrix and improves the ionic conductivity, Li+ transfer number, rate capability, cycling stability, and thermal stability of CSEs. Among them, 2VS-CSE with a VTES-to-LATP mass ratio of 2:1 exhibits the optimal overall performance, with a high ionic conductivity of 0.542 mS·cm–1, Li+ transfer number of 0.617, a wider electrochemical stability window to 5.39 V (vs. Li/Li+), and better compatibility with the lithium metal anode (over 1000 h). Li|LiFePO4 battery assembled with 2VS-CSE shows excellent cycling stability of 86.6% after 300 cycles at 0.5 and 25 °C. The addition of VTES-modified LATP provides a strategy for promoting the application of CSEs in solid-state lithium-ion batteries.
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