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A Modified Ceramic-Coating Separator with High-Temperature Stability for Lithium-Ion Battery

机译:锂离子电池高温稳定性改进的陶瓷涂层隔膜

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In this work, the ceramic coating separator (CCS-CS) prepared with polyethylene (PE) separator, Al 2 O 3 inorganic particles, carboxymethyl cellulose sodium (CMC) and styrene-butadiene rubber (SBR) mix binders is further modified by coating with a thin polydopamine (PDA) layer through a simple chemical deposition method. Compared with the bare ceramic coating separator, the PDA-modified CCS-CS (CCS-CS-PDA) exhibits excellent thermal stability, which shows no thermal shrinkage after storing at 200 °C for 30 min. Compared with the PE separator, both the uptake and wettability with the electrolyte and water of CCS-CS-PDA are improved significantly. Meanwhile, when saturated with liquid electrolyte, the CCS-CS-PDA also shows enabled high ionic conductance. Furthermore, the test of the electrochemical impedances changing with the temperatures suggests that only the PE separator exhibits no thermal shutdown behaviors, and the CCS-CS separator only has a shutdown temperature range from 138 to 160 °C, while the CCS-CS-PDA shows a shutdown temperature range from 138 to more than 200 °C. The cells prepared with the CCS-CS-PDA also show stable repeated cycling performance and good rate capacity at room temperature.
机译:在这项工作中,用聚乙烯(PE)隔离剂,Al 2 O 3无机颗粒,羧甲基纤维素钠(CMC)和丁苯橡胶(SBR)混合粘合剂制备的陶瓷涂料隔离剂(CCS-CS)通过用通过简单的化学沉积方法形成一个薄的聚多巴胺(PDA)层。与裸露的陶瓷涂层隔离器相比,PDA改性的CCS-CS(CCS-CS-PDA)具有出色的热稳定性,在200°C下保存30分钟后,没有热收缩。与PE隔板相比,CCS-CS-PDA的电解质和水的吸收性和润湿性均得到显着改善。同时,当被液体电解质饱和时,CCS-CS-PDA也显示出高离子电导率。此外,对电化学阻抗随温度变化的测试表明,只有PE隔膜没有热关机行为,而CCS-CS隔膜的关机温度范围仅为138至160°C,而CCS-CS-PDA显示关闭温度范围为138至200°C以上。用CCS-CS-PDA制备的电池在室温下也显示出稳定的重复循环性能和良好的倍率容量。

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