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首页> 外文期刊>Advanced materials interfaces >Binder-Free Nanoparticulate Coating of a Polyethylene Separator via a Reactive Atmospheric Pressure Plasma for Lithium-Ion Batteries with Improved Performances
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Binder-Free Nanoparticulate Coating of a Polyethylene Separator via a Reactive Atmospheric Pressure Plasma for Lithium-Ion Batteries with Improved Performances

机译:通过具有改进的性能的锂离子电池通过反应性大气压等离子体的可粘合剂纳米颗粒涂覆聚乙烯分离器。具有改进的性能

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摘要

A reactive atmospheric pressure plasma containing Ar/O-2/hexamethyldisiloxane is applied to coat polyethylene (PE) separators for lithium-ion batteries. The PE separator moves through the plasma region roll-to-roll, and its top and internal fiber surface is coated with a thin SiOxCyHz film composed of nanoparticulates with an average size of approximate to 100 nm. The nanoparticulate film has relatively high heat resistance, which provides a PE separator capable of structural support with improved thermal stability. Meanwhile, the polar functional groups on the PE surface improve its crucial properties such as wettability, electrolyte uptake, and ionic conductivity. A mere 3 min of coating endows the lithium-ion battery with a lower interface resistance and improved C-rate and cycling performances. Most importantly, the binder-free coating method provides a new, eco-efficient way to improve the performances of polyolefin separators for lithium-ion batteries.
机译:含有Ar / O-2 /六甲基二硅氧烷的反应性大气压等离子体涂覆用于涂覆锂离子电池的聚乙烯(PE)分离器。 PE分离器通过等离子体区域卷辊,其顶部和内部纤维表面涂覆有由纳米颗粒组成的薄SiOxcyhz膜,其平均尺寸为100nm。 纳米颗粒膜具有相对高的耐热性,其提供能够具有改善的热稳定性的结构支撑的PE分离器。 同时,PE表面上的极性官能团改善其关键性质,例如润湿性,电解质吸收和离子电导率。 仅3分钟的涂层赋予锂离子电池较低的界面电阻和改善的C速率和循环性能。 最重要的是,无粘合剂涂布方法提供了一种新的生态有效的方法来改善锂离子电池的聚烯烃分离器的性能。

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