Key Laboratory for Green Chemical Technology of Ministry of Education, School of Chemical Engineering and Technology, Tianjin University, Tianjin, 300072, China.
Haihe Laboratory of Sustainable Chemical Transformations, Tianjin, 300192, China.
Small. 2023 Jun;19(26):e2207453. doi: 10.1002/smll.202207453. Epub 2023 Mar 23.
With the pursuit of high-energy-density for lithium-ion batteries (LIBs), the hidden safety problems of batteries have gradually emerged. LiNi Co Mn O (NCM) is considered as an ideal cathode material to meet the urgent needs of high-energy-density batteries. However, the oxygen precipitation reaction of NCM cathode at high temperature brings serious safety concerns. In order to promote high-safety lithium-ion batteries, herein, a new type of flame-retardant separator is prepared using flame-retardant (melamine pyrophosphate, MPP) and thermal stable Poly(vinylidene fluoride-co-hexafluoropropylene) (PVDF-HFP). MPP takes the advantage of nitrogen-phosphorus synergistic effect upon the increased internal temperature of LIBs, including the dilution effect of noncombustible gas and the rapidly suppression of undesirable thermal runaway. The developed flame-retardant separators show negligible shrinkage over 200 °C and it takes only 0.54 s to extinguish the flame in the ignition test, which are much superior to commercial polyolefin separators. Moreover, pouch cells are assembled to demonstrate the application potential of PVDF-HFP/MPP separators and further verify the safety performance. It is anticipated that the separator with nitrogen-phosphorus flame-retardant can be extensively applied to various high-energy-density devices owing to simplicity and cost-effectiveness.
随着对锂离子电池(LIBs)高能量密度的追求,电池隐藏的安全问题逐渐显现。LiNi Co Mn O(NCM)被认为是一种理想的阴极材料,以满足高能量密度电池的迫切需求。然而,NCM 阴极在高温下的氧沉淀反应带来了严重的安全问题。为了推动高安全性锂离子电池的发展,本文采用阻燃剂(三聚氰胺焦磷酸盐,MPP)和热稳定的聚(偏氟乙烯-共-六氟丙烯)(PVDF-HFP)制备了一种新型阻燃隔膜。MPP 利用氮磷协同效应,在 LIBs 内部温度升高时,包括不可燃气体的稀释效应和迅速抑制不良热失控,发挥作用。所开发的阻燃隔膜在 200°C 以上几乎没有收缩,在点火测试中仅需 0.54 秒即可熄灭火焰,这远远优于商业聚烯烃隔膜。此外,还组装了软包电池以展示 PVDF-HFP/MPP 隔膜的应用潜力,并进一步验证其安全性能。预计具有氮磷阻燃剂的隔膜由于简单且具有成本效益,可以广泛应用于各种高能量密度器件。