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Flame-Retardant Crosslinked Polymer Stabilizes Graphite–Silicon Composite Anode for Self-Extinguishing Lithium-Ion Batteries

机译:阻燃交联聚合物稳定自熄锂离子电池的石墨-硅复合阳极

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摘要

The graphite–silicon composite (GSC) anode materials with high specific capacity and excellent conductivity hold intriguing promise for highperformance lithium-ion batteries (LIBs). However, commercializing GSC is hindered by its poor cyclability and safety issues. Here, a fire-resistant polymer crosslinked with ammonium polyphosphate (APP) and polyacrylic acid (PAA) to improve the electrochemical properties and enhance the safety of the GSC anode is designed. The crosslinked polymer not only forms a 3D network structure to strengthen the mechanical properties of the composite electrode but also uniformly covers the electrode surface to effectively minimize the side-reaction between electrodes and electrolyte, thereby improving its rate capacity and cycling stability. As a result, the GSC/PAA anode crosslinked with 10 wt APP (GSC/10APP-PAA) delivers a high capacity of 315 mAh g~(?1) at 0.5 C and stably operates for 1000 cycles with 0.03 capacity decay cycle~(?1). More importantly, the peak heat release rate and the total heat release value of GSC/10APP-PAA anode are significantly depressed from 0.35 to 0.1 J s~(?1), and from 1.6 to 0.6 J g~(?1), respectively, thereby reducing the self-extinguishing time, which proves that the crosslinked polymer plays a fireproof role in the process of the thermal runaway of LIBs.
机译:石墨-硅复合材料(GSC)负极材料具有高比容量和优异的导电性,为高性能锂离子电池(LIB)带来了广阔的前景。然而,GSC的商业化受到其较差的可循环性和安全性问题的阻碍。本文设计了一种与聚磷酸铵(APP)和聚丙烯酸(PAA)交联的耐火聚合物,以改善GSC阳极的电化学性能并增强其安全性。交联聚合物不仅形成3D网络结构,强化复合电极的力学性能,而且均匀地覆盖电极表面,有效减少电极与电解液之间的副反应,从而提高其倍率容量和循环稳定性。因此,GSC/PAA阳极与10 wt%的APP(GSC/10APP-PAA)交联,在0.5 C下具有315 mAh g~(?1)的高容量,并可稳定运行1000次循环,容量衰减循环率为0.03%~(?1)。更重要的是,GSC/10APP-PAA负极的峰值放热速率和总放热值分别从0.35 J s~(?1)和1.6 J g~(?1)显著降低到0.6 J g~(?1),从而缩短了自熄时间,证明交联聚合物在锂离子电池热失控过程中起到了防火作用。

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