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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Polyimide matrix-enhanced cross-linked gel separator with three-dimensional heat-resistance skeleton for high-safety and high-power lithium ion batteries
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Polyimide matrix-enhanced cross-linked gel separator with three-dimensional heat-resistance skeleton for high-safety and high-power lithium ion batteries

机译:具有三维耐热骨架的聚酰亚胺基增强交联凝胶分离器,用于高安全性和大功率锂离子电池

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摘要

To develop a kind of get polymer electrolyte with high ion conductivity and good mechanical strength and thermal stability, a polyimide (PI) matrix-enhanced cross-linked gel separator is designed and fabricated by a simple dip-coating and heat treatment method. The PI nonwoven substrate provides high-temperature thermal stability for the get separator and the crosslinked get part yields enhanced affinity with the liquid electrolyte. Besides, the cross-linked polymer network could solve the issue of long-term durability of the composite separator in batteries. The get separator shows better cyclability and rate capability than the traditional PP separator, implying a promising potential application in high-power, high-safety lithium ion batteries. The preparation process is compatible with the traditional manufacturing process of nonwoven membranes, and can be easily converted into continuous production on the industrial scale.
机译:为了开发一种具有高离子电导率,良好的机械强度和热稳定性的高分子聚合物电解质,通过简单的浸涂和热处理方法设计并制备了聚酰亚胺(PI)基体增强的交联凝胶分离器。 PI非织造布基材为get隔膜提供了高温热稳定性,并且交联的get part增强了与液体电解质的亲和力。此外,交联的聚合物网络可以解决电池中复合隔膜的长期耐久性问题。与传统的PP隔板相比,get隔板显示出更好的可循环性和倍率性能,这意味着在高功率,高安全性的锂离子电池中具有广阔的应用前景。该制备方法与传统的非织造膜的制造方法兼容,并且可以容易地转化为工业规模的连续生产。

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