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用于钙离子传导的聚偏氟乙烯基凝胶聚合物电解质:盐浓度和干燥温度对配位环境及离子电导率影响的研究

Polyvinylidene Fluoride-Based Gel Polymer Electrolytes for Calcium Ion Conduction: A Study of the Influence of Salt Concentration and Drying Temperature on Coordination Environment and Ionic Conductivity.

作者信息

Fluker Edward C, Pathreeker Shreyas, Hosein Ian D

机构信息

Syracuse University, 329 Link Hall, Syracuse, New York 13244, United States.

出版信息

J Phys Chem C Nanomater Interfaces. 2023 Aug 15;127(33):16579-16587. doi: 10.1021/acs.jpcc.3c02342. eCollection 2023 Aug 24.

Abstract

Calcium-ion batteries emerged as a potential sustainable alternative energy storage system; however, there remains the need to further develop electrolytes to improve their performance. We report a gel polymer electrolyte (GPE)-based on polyvinylidene fluoride (PVDF) for calcium ion conduction. The gel electrolyte was synthesized by combining a PVDF polymer host, Ca(TFSI) salt, and -methyl-2-pyrrolidone (NMP) solvent. Using Fourier transform infrared spectroscopy, we analyze the effect of salt concentration and drying temperature on the degree of salt dissociation in the electrolyte. Our results show that the concentration of free cations in the electrolyte is primarily coordinated with NMP as well as PVDF, generating a suitable network for ion transport, i.e., a liquid electrolyte encompassed within a polymer matrix. We find that processing conditions such as drying temperature, which varies solvent content, play a critical role in developing polymer electrolytes that demonstrate optimal electrochemical performance. The GPEs are semicrystalline and stable up to 120 °C, which is critical for their use in applications such as in electric vehicles and renewable energy storage systems. The ionic conductivity of the GPEs exhibit Arrhenius-type behavior, and the total ionic conductivity at room temperature is suitable for applications, with values of 0.85 × 10 S/cm for 0.5 M and 3.56 × 10 S/cm for 1.0 M concentrations. The results indicate that the GPE exhibits high conductivity and good stability, making it a promising candidate for use in high-performance calcium ion batteries.

摘要

钙离子电池作为一种潜在的可持续替代储能系统应运而生;然而,仍有必要进一步开发电解质以提高其性能。我们报道了一种基于聚偏氟乙烯(PVDF)的用于钙离子传导的凝胶聚合物电解质(GPE)。该凝胶电解质是通过将PVDF聚合物主体、Ca(TFSI)盐和N-甲基-2-吡咯烷酮(NMP)溶剂混合合成的。利用傅里叶变换红外光谱,我们分析了盐浓度和干燥温度对电解质中盐离解程度的影响。我们的结果表明,电解质中游离阳离子的浓度主要与NMP以及PVDF配位,形成了一个适合离子传输的网络,即聚合物基质中包含的液体电解质。我们发现,诸如干燥温度等加工条件会改变溶剂含量,在开发具有最佳电化学性能的聚合物电解质方面起着关键作用。这些GPE是半结晶的,在高达120°C的温度下稳定,这对于它们在电动汽车和可再生能源存储系统等应用中的使用至关重要。GPE的离子电导率表现出阿伦尼乌斯型行为,室温下的总离子电导率适用于相关应用,0.5 M浓度时为0.85×10⁻³ S/cm,1.0 M浓度时为3.56×10⁻³ S/cm。结果表明,该GPE具有高电导率和良好的稳定性,使其成为高性能钙离子电池的一个有前途的候选材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/24b7/10461727/431b93b1a165/jp3c02342_0002.jpg

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