首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Controlled pore evolution during phase inversion from the combinatorial non-solvent approach: application to battery separators
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Controlled pore evolution during phase inversion from the combinatorial non-solvent approach: application to battery separators

机译:组合非溶剂方法在相转化过程中可控的孔演化:应用于电池隔膜

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摘要

Phase inversion is a simple process to prepare porous thin films for lithium ion battery (LIB) separators. However, controlling porous morphologies during phase inversions for efficient lithium ionic transportation is a critical issue for more optimized battery performances. Here, we report an LIB separator via phase inversion by selecting non-solvents from the combinatorial approach. Interestingly, the formation of PVdF-HFP skeletons was governed by the controlled phase inversion with various mixtures of water, methanol, ethanol and 2-propanol. For a single non-solvent system, a water-based non-solvent (4 wt% water) was the best choice for the phase-inversion-based PVdF-HFP separators for LIBs. However, when a mixture of 2 wt% water and 3 wt% methanol was used as the non-solvent, the best rate capability and long-term stability were obtained, which led to better LIB performances than those of commercialized polyethylene separators.
机译:相转化是制备用于锂离子电池(LIB)隔膜的多孔薄膜的简单方法。但是,在相转化过程中控制多孔形貌以实现有效的锂离子传输是实现更优化电池性能的关键问题。在这里,我们通过从组合方法中选择非溶剂,通过相转化报告了LIB分离器。有趣的是,PVdF-HFP骨架的形成是由水,甲醇,乙醇和2-丙醇的各种混合物的受控相转化控制的。对于单一非溶剂系统,水基非溶剂(4 wt%水)是用于LIB的基于相转化的PVdF-HFP分离器的最佳选择。但是,当使用2 wt%的水和3 wt%的甲醇的混合物作为非溶剂时,可获得最佳的速率能力和长期稳定性,这导致了LIB性能优于商业化的聚乙烯隔膜。

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