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Sustainable heat-resistant and flame-retardant cellulose-based composite separator for high-performance lithium ion battery

机译:可持续耐热和阻燃的纤维素基复合隔膜用于高性能锂离子电池

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摘要

A sustainable, heat-resistant and flame-retardant cellulose-based composite nonwoven has been successfully fabricated and explored its potential application for promising separator of high-performance lithium ion battery. It was demonstrated that this flame-retardant cellulose-based composite separator possessed good flame retardancy, superior heat tolerance and proper mechanical strength. As compared to the commercialized polypropylene (PP) separator, such composite separator presented improved electrolyte uptake, better interface stability and enhanced ionic conductivity. In addition, the lithium cobalt oxide (LiCoO2)/graphite cell using this composite separator exhibited better rate capability and cycling retention than that for PP separator owing to its facile ion transport and excellent interfacial compatibility. Furthermore, the lithium iron phosphate (LiFePO4)/lithium cell with such composite separator delivered stable cycling performance and thermal dimensional stability even at an elevated temperature of 120°C. All these fascinating characteristics would boost the application of this composite separator for high-performance lithium ion battery.
机译:可持续,耐热,阻燃的纤维素基复合非织造布已成功制造,并探索了其在高性能锂离子电池隔膜方面的潜在应用。证明了该阻燃性纤维素基复合隔板具有良好的阻燃性,优异的耐热性和适当的机械强度。与商业化的聚丙烯(PP)隔板相比,这种复合隔板表现出改善的电解质吸收,更好的界面稳定性和增强的离子电导率。另外,由于使用了这种复合隔膜,因此钴离子锂电池(LiCoO2)/石墨电池比离子隔膜具有更好的速率能力和循环保持性,这是由于其离子迁移方便和出色的界面相容性。此外,即使在120℃的高温下,具有这种复合隔板的磷酸锂铁(LiFePO 4)/锂电池也具有稳定的循环性能和热尺寸稳定性。所有这些令人着迷的特性将促进这种复合隔膜在高性能锂离子电池中的应用。

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