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首页> 外文期刊>New Journal of Chemistry >Organic-inorganic binary nanoparticle-based composite separators for high performance lithium-ion batteries
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Organic-inorganic binary nanoparticle-based composite separators for high performance lithium-ion batteries

机译:高性能锂离子电池的有机-无机二元纳米颗粒基复合隔板

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摘要

In an effort to improve the thermal resistance and the electrochemical performances of separators for lithium-ion batteries, we demonstrate a facile approach to prepare a novel ZrO2/poly(vinylidene fluoride-co-hexafluoro-propylene) (PVdF-HFP) binary particle-coated polyethylene terephthalate (PET) nonwoven composite separator. In this approach, particle-shaped PVdF-HFP was used as a binder for the first time to attach ZrO2 particles to a PET nonwoven substrate by a solvent vapor-induced bonding process. This method can improve the microstructure and surface properties of the composite separator compared with the conventional film-shaped polymer binder. The electrolyte wettability, ionic conductivity and thermal stability of the ZrO2/PVdF-HFP composite separator are superior to those of commercially available microporous polyolefin separators due to the well-connected three-dimensional porous structure and the electrolyte-philic surface properties of the composite separator. As a result, the cells assembled with the composite separator exhibit better cell performance such as the discharge C-rate capability and cycling performance, compared with those assembled with polyolefin-based separators. Conspicuously, the improved performance of the ZrO2/PVdF-HFP separator indicates that binary particle-based composite separators could be potentially applied in next generation lithium-ion batteries.
机译:为了提高锂离子电池隔膜的耐热性和电化学性能,我们展示了一种简便的方法来制备新型ZrO2 /聚(偏二氟乙烯-共六氟丙烯)(PVdF-HFP)二元颗粒-涂层的聚对苯二甲酸乙二酯(PET)非织造复合隔板。在这种方法中,颗粒状的PVdF-HFP首次用作粘合剂,通过溶剂蒸汽诱导的粘合工艺将ZrO2颗粒附着到PET无纺布基材上。与常规的膜状聚合物粘合剂相比,该方法可以改善复合隔板的微观结构和表面性能。 ZrO2 / PVdF-HFP复合隔板的电解质润湿性,离子电导率和热稳定性优于三维多孔聚烯烃隔板,因为它们具有良好的三维连通性以及复合隔板的亲电解质表面特性。结果,与用聚烯烃基隔板组装的电池相比,用复合隔板组装的电池表现出更好的电池性能,例如放电C速率能力和循环性能。值得注意的是,ZrO2 / PVdF-HFP隔膜性能的改善表明,基于二元颗粒的复合隔膜可以潜在地应用于下一代锂离子电池。

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