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Effect of Al_2O_3/SiO_2 composite ceramic layers on performance of polypropylene separator for lithium-ion batteries

机译:Al_2O_3 / SiO_2复合陶瓷层对锂离子电池聚丙烯隔膜性能的影响

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摘要

In order to improve the safety of lithium-ion batteries, Al_2O_3/SiO_2 composite ceramic layers were introduced on both sides of polypropylene (PP) separator surface. SiO_2 is used to form porous network, and Al_2O_3 is evenly distributed in it. The introduction of Al_2O_3/SiO_2 composite ceramic layers can not only restrict the motion of separator but also resist the protrusion of the separator, so the composite separator has lower thermal shrinkage and higher mechanical properties. As the composite layers can retain additional liquid electrolyte, the composite separator has higher electrolyte uptake and ionic conductivity. Cell performance, such as C-rate capability and cycle performance, were also investigated and compared to those obtained with pristine separator and only SiO_2 coated separator.
机译:为了提高锂离子电池的安全性,在聚丙烯(PP)隔板表面的两侧均引入了Al_2O_3 / SiO_2复合陶瓷层。 SiO_2用于形成多孔网络,Al_2O_3均匀分布在其中。 Al_2O_3 / SiO_2复合陶瓷层的引入不仅限制了隔板的运动,而且还阻止了隔板的突出,因此该复合隔板的热收缩率较低,机械性能较高。由于复合层可以保留额外的液体电解质,因此复合隔板具有较高的电解质吸收率和离子电导率。还研究了电池性能,例如C速率性能和循环性能,并将其与原始隔板和仅SiO_2涂层隔板获得的电池性能进行了比较。

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