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Layer-by-Layer Deposition of Organic-Inorganic Hybrid Multilayer on Microporous Polyethylene Separator to Enhance the Electrochemical Performance of Lithium-Ion Battery

机译:在微孔聚乙烯隔板上逐层沉积有机-无机杂化多层以增强锂离子电池的电化学性能

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摘要

A simple layer-by-layer (LbL) self-assembly process of poly(acrylic acid) (PAA) and ZrO2 was applied to construct functional ultrathin multilayers on polyethylene (PE) separators without sacrificing the excellent porous structure of separators. Such PAA/ZrO2 LbL-modified PE separators possess good electrolyte wettability, excellent electrolyte uptake, high ionic conductivity and large Li+ transference number. More importantly, the top layer of LbL self-assembly would affect the dissociation of electrolyte and the formation of solid electrolyte interphase (SEI) layer in half-cells. Compared with the pristine and (PAA/ZrO2)(1)PAA-modified PE separators, (PAA/ZrO2)(3)-modified PE separator shows a larger Li+ transference number (0.6) and a faster tendency to form a stable SEI layer, endowing half-cells with excellent capacity retention at high C-rates and superior cycling performance. These fascinating characteristics will provide the LbL self-assembly with a promising method to improve the surface property of PE separators for high performance lithium-ion batteries.
机译:采用一种简单的聚丙烯酸(PAA)和ZrO2的逐层(LbL)自组装方法,在聚乙烯(PE)隔膜上构造功能超薄多层膜,而不会牺牲隔膜的优异多孔结构。这种PAA / ZrO2 LbL改性的PE隔膜具有良好的电解质润湿性,优异的电解质吸收能力,高离子电导率和较大的Li +转移数。更重要的是,LbL自组装的顶层将影响电解质的解离和半电池中固体电解质中间相(SEI)层的形成。与原始和(PAA / ZrO2)(1)PAA改性的PE隔膜相比,(PAA / ZrO2)(3)改性的PE隔膜显示出更大的Li +转移数(0.6)和更快的趋势形成稳定的SEI层,赋予半电池以高C速率具有出色的容量保持能力以及出色的循环性能。这些令人着迷的特性将为LbL自组装提供一种有望改善高性能锂离子电池PE隔膜表面性能的方法。

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