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Close-packed Al_2O_3 Nanoparticles/waterborne Polyurethane Layer-coated Polyethylene Separators for Lithium-ion Batteries

机译:封闭填充Al_2O_3纳米粒子/水性聚氨酯层涂层用于锂离子电池的聚乙烯分离器

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Separator shutdown by interrupting the transmission of lithium ions to terminate the battery reaction is a valid safety mechanism for preventing thermal runaway reactions in lithium ion batteries. Yet the cell temperature continues rising after the shutdown, the separator need sufficient thermal stability to physically isolate the electrodes. To reduce the thermal shrinkage of polyethylene (PE) separators, a fresh composite separator is developed by introducing alumina (Al_2O_3) nanoparticles/waterborne polyurethane (WPU) layer on one side of the pristine PE separator via casting process. The microporous structure of the composite separator is supposed to be a significant consideration for the cell performance, which is confirmed by the scanning electron microscope. Compared with the pristine PE separator, the thermal shrinkage of the novel separator improved markedly with an acceptable decline in air permeability and ion conductivity.
机译:通过中断锂离子的传输来终止电池反应的分离器关闭是防止锂离子电池中热失控反应的有效安全机制。然而,在关闭后,细胞温度继续上升,分离器需要足够的热稳定性来物理隔离电极。为了减少聚乙烯(PE)分离器的热收缩,通过在原始PE分离器的一侧通过浇铸过程将氧化铝(Al_2O_3)纳米颗粒/水性聚氨酯(WPU)层引入新鲜的复合隔膜。复合分离器的微孔结构应该是对细胞性能的显着考虑,由扫描电子显微镜确认。与原始PE分离器相比,新型分离器的热收缩显着改善,透气性和离子传导性可接受。

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