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首页> 外文期刊>Nanoscale >Robust polyimide nanofibrous membrane with porous-layer-coated morphology by in situ self-bonding and micro-crosslinking for lithium-ion battery separator
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Robust polyimide nanofibrous membrane with porous-layer-coated morphology by in situ self-bonding and micro-crosslinking for lithium-ion battery separator

机译:健壮的聚酰亚胺nanofibrous膜通过原位porous-layer-coated形态自粘合和micro-crosslinking锂离子电池分离器

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摘要

Herein, we demonstrate a strategy to improve the tensile strength, thermal safety issues, and electrochemical performance of an as-synthesized polyimide separator. By spraying the solution of a specific chemical constituent on both sides of a poly(amic acid) non-woven membrane followed by thermal treatment, a novel polyimide nanofibrous membrane with porous-layer-coated morphology was successfully fabricated by in situ self-bonding and micro-crosslinking technique. The self-bonding and micro-crosslinking techniques improve the tensile strength of the nanofiber membranes from 5 MPa to 28 MPa by forming a crosslinked network structure, thereby reducing the risk of nanofiber disassembly during long-term operation. The rigid structure and aromatic groups in the polyimide chain enable the separator to have outstanding thermal dimensional stability at temperatures as high as 300 degrees C and thermal stability (5 weight loss at about 528 degrees C). Additionally, the unique flame retarding capability of polyimide ensures high security of the battery as well. Notably, the lithium-ion battery using porous-layer-coated polyimide separator exhibits a much higher capability (129.9 mA h g(-1), 5C) than that using a Celgard-2400 separator (95.2 mA h g(-1), 5C) and could work steadily at 120 degrees C, thus implying promising application in next generation high-safety and high-performance lithium-ion batteries.
机译:在此,我们将演示一个策略来改善抗拉强度、热安全问题as-synthesized的电化学性能聚酰亚胺分隔符。一个特定的两边的化学成分聚(酰胺酸)无纺布膜紧随其后聚酰亚胺nanofibrous热处理,一本小说膜与porous-layer-coated形态成功地制作了原位自粘合和micro-crosslinking技术。自粘合和micro-crosslinking技术提高纳米纤维的抗拉强度膜形成一个从5 MPa 28 MPa交联网络结构,从而减少纳米纤维拆卸期间的风险长期操作。芳香聚酰亚胺链中启用优秀的热维分离器稳定的温度高达300度C和热稳定性(体重约为5%528摄氏度)。此外,独特的火焰制动性能的聚酰亚胺确保高电池的安全。锂离子电池使用porous-layer-coated聚酰亚胺分离器展品更高能力(129.9 mA h g (1), 5 c)使用马celgard - 2400分离器(95.2 h g (1), 5 c),工作稳定在120摄氏度,因此这意味着承诺在下一代应用程序高安全、高性能锂离子电池。

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