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Plasma-assisted water-based Al2O3 ceramic coating for polyethylene-based microporous separators for lithium metal secondary batteries

机译:用于锂金属二次电池的聚乙烯基微孔隔板的等离子辅助水性Al2O3陶瓷涂层

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摘要

To meet the high requirements of future lithium secondary batteries based on lithium metal anodes for large-scale applications, we develop a cost-effective and environmentally friendly water-based method to prepare inorganic/polymer composite coating layers on commercial hydrophobic polyolefin-based microporous separators. To this end, we utilize a plasma-treatment technique. After the plasma treatment, the surface of the polyethylene (PE) separators changes from hydrophobic to hydrophilic, and the pore structures of the separators widen. These changes improve the affinity of the PE separators for polar liquid electrolytes and their ionic conductivities compared to those of bare PE and other ceramic-coated control systems. The polar functional groups derived from plasma treatment interact with the hydroxyl groups of water-soluble polymeric binders in the ceramic (Al2O3) coating layers, thereby improving the adhesion strength between the PE substrate and the ceramic coating layer. This improvement impedes hydrophobic recovery phenomena. As a result, plasma-treated ceramic-coated separators (plasma CCSs) exhibit superior power capability and cycle performance (plasma CCS maintained 94.7% of the initial discharge capacity up to the 1000th cycle at C/2, whereas bare PE's remained high only up to the 300th cycle) in unit cells based on lithium metal anodes. (C) 2016 Elsevier Ltd. All rights reserved.
机译:为了满足未来基于锂金属阳极的锂二次电池对大规模应用的高要求,我们开发了一种经济高效且环保的水基方法,可在商用疏水性聚烯烃基微孔隔膜上制备无机/聚合物复合涂层。为此,我们利用了等离子体处理技术。等离子体处理后,聚乙烯(PE)隔板的表面从疏水性变为亲水性,并且隔板的孔结构变宽。与裸露的PE和其他陶瓷涂层的控制系统相比,这些变化提高了PE隔板对极性液体电解质的亲和性和离子电导率。源自等离子体处理的极性官能团与陶瓷(Al2O3)涂层中的水溶性聚合物粘合剂的羟基相互作用,从而提高了PE基材与陶瓷涂层之间的粘合强度。这种改进阻碍了疏水恢复现象。结果,等离子处理的陶瓷涂层隔板(等离子CCS)表现出优异的功率能力和循环性能(等离子CCS保持初始放电容量的94.7%,直至在C / 2处的第1000个循环,而裸露的PE仍仅保持高水平到第300个周期)。 (C)2016 Elsevier Ltd.保留所有权利。

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