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A Novel Self-Binding Composite Separator Based on Poly(tetrafluoroethylene) Coating for Li-Ion Batteries

机译:基于聚四氟乙烯涂层的锂离子电池新型自粘合复合隔膜

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In this study, a novel composite separator based on polytetrafluoroethylene (PTFE) coating layers and a commercial polyethylene (PE) separator is developed for high performance Li-ion batteries. This composite separator is prepared by immersing a PE separator directly into a commercial PTFE suspension to obtain a self-binding PTFE/PE/PTFE tri-layered structure. Then, the as-prepared composite separator is further treated with a H 2 O 2 /H 2 SO 4 solution to enhance its electrolyte affinity. The results show that the coating layer, consisting of close-packed PTFE particles, possesses a highly ordered nano-porous structure and an excellent electrolyte wettability property, which significantly enhance the ionic conductivity of the composite separator. Due to the presence of the PTFE-based coating layer, the composite separator exhibits better thermal stability compared with the PE separator, reaching the thermal-resistant grade of commercial ceramic-coated separators. By using different separators, CR2032-type unit half-cells composed of a Li anode and a LiFePO 4 cathode were assembled, and their C-rate and cycling performances were evaluated. The cell assembled with the composite separator was proven to have better C-rate capability and cycling capacity retention than the cell with the polyethylene separator. It is expected that the composite separator can be a potential candidate as a coating-type separator for high-performance rechargeable Li-ion batteries.
机译:在这项研究中,针对高性能锂离子电池,开发了一种基于聚四氟乙烯(PTFE)涂层的新型复合隔膜和商用聚乙烯(PE)隔膜。通过将PE隔板直接浸入市售PTFE悬浮液中以获得自粘合PTFE / PE / PTFE三层结构来制备这种复合隔板。然后,将所制备的复合隔板进一步用H 2 O 2 / H 2 SO 4溶液处理以增强其电解质亲和力。结果表明,由紧密堆积的PTFE颗粒组成的涂层具有高度有序的纳米多孔结构和优异的电解质润湿性,从而显着提高了复合隔膜的离子电导率。由于存在基于PTFE的涂层,因此与PE隔板相比,复合隔板表现出更好的热稳定性,达到了商用陶瓷涂层隔板的耐热等级。通过使用不同的隔板,组装了由Li阳极和LiFePO 4阴极组成的CR2032型单元半电池,并评估了它们的C速率和循环性能。事实证明,与复合隔板组装在一起的电池比具有聚乙烯隔板的电池具有更好的C速率能力和循环容量保持能力。期望复合隔膜可以作为高性能可再充电锂离子电池的涂层型隔膜的潜在候选者。

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