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Preparation and Properties of Poly(ether ether ketone)/Carbon Nanotube Modified Polypropylene Janus Composite Separator北大核心CSCD
引用本文:杜新伟,赵文杰,呼微,孙昭艳,刘万利,任天磊,付明星.Preparation and Properties of Poly(ether ether ketone)/Carbon Nanotube Modified Polypropylene Janus Composite Separator北大核心CSCD[J].应用化学,2022,39(12):1862-1869.
作者姓名:杜新伟  赵文杰  呼微  孙昭艳  刘万利  任天磊  付明星
作者单位:1.(长春工业大学化学工程学院,长春 130012) 2(东北师范大学化学学院,长春 130024 );3.中国科学院长春应用化学研究所,高分子物理与化学国家重点实验室,长春 130022;4.中科英华长春高技术有限公司,长春 130000) 5(中广核工程有限公司,深圳 518000
基金项目:国家自然科学基金面上项目(52073044);国家自然科学基金区域创新发展基金(U21A20330);吉林省科技厅重点研发项目(20200401036GX);吉林省发改委产业创新专项资金(2021C036-2);长春市科技局重点研发计划应用基础研究专项(21ZY32);长春新区2019年度“长白慧谷”英才计划高层次创新创业人才项目(9-2020004);中国科学院长春应用化学研究所国家高分子物理和化学重点实验室开放课题(2021-25)
摘    要:Lithium-ion batteries (LIBs)have attracted wide attention because of their broad prospects in electric vehicles. However,the safety problems and low multiplier performance of the commercial polyolefin separator limit their further development,due to the poor dimensional thermal stability and low electrolyte absorption rate. Poly(ether ether ketone)(PEEK)and carbon nanotube(CNT)are compounded to coat on polypropylene (PP) to prepare Janus composite separator (PP@C) through the phase inversion method. PP@C composite separator does not deform at 180 ℃ for 0. 5 h(only slight deformation),illustrating excellent thermal stability. The electrolyte absorption rate of PP@C2 is 193. 8%. The electrolyte uptake rate of the PP@C2 composite membrane was 193. 8%,which was 64. 5% higher than the PP membrane,showing a superduper electrolyte permeability. As a result,the specific discharge capacity of LIBs assembled with PP@C2 composite separator is 157. 6 mA·h/g at 0. 2 C and 129. 8 mA·h/g at 2 C,showing good rate performance with the capacity recovery rate of more than 99%. This might be attributed to the ultra-high thermal stability of PEEK,the good affinity of the electrolyte,the high conductivity of CNT,as well as the uniform dispersion of Li+ ,so that the separator can have excellent electrochemical performance while improving safety. © 2022, Science Press (China). All rights reserved.

关 键 词:聚醚醚酮  碳纳米管  相转化  尺寸热稳定性  Janus复合隔膜
收稿时间:2022-03-10
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