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Plasma Modified Polypropylene Membranes as the Lithium-Ion Battery Separators

Plasma Modified Polypropylene Membranes as the Lithium-Ion Battery Separators
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摘要 To reduce the thermal shrinkage of the polymeric separators and improve the safety of the Li-ion batteries,plasma treatment and plasma enhanced vapor chemical deposition(PECVD)of SiO_x-like are carried out on polypropylene(PP)separators,respectively.Critical parameters for separator properties,such as the thermal shrinkage rate,porosity,wettability,and mechanical strength,are evaluated on the plasma treated PP membranes.O_2 plasma treatment is found to remarkably improve the wettability,porosity and electrolyte uptake.PECVD SiO_x-like coatings are found to be able to effectively reduce the thermal shrinkage rate of the membranes and increase the ionic conductivity.The electrolyte-philicity of the Si Ox-like coating surface can be tuned by the varying O_2 content in the gas mixture during the deposition.Though still acceptable,the mechanical strength is reduced after PECVD,which is due to the plasma etching. To reduce the thermal shrinkage of the polymeric separators and improve the safety of the Li-ion batteries,plasma treatment and plasma enhanced vapor chemical deposition(PECVD)of SiO_x-like are carried out on polypropylene(PP)separators,respectively.Critical parameters for separator properties,such as the thermal shrinkage rate,porosity,wettability,and mechanical strength,are evaluated on the plasma treated PP membranes.O_2 plasma treatment is found to remarkably improve the wettability,porosity and electrolyte uptake.PECVD SiO_x-like coatings are found to be able to effectively reduce the thermal shrinkage rate of the membranes and increase the ionic conductivity.The electrolyte-philicity of the Si Ox-like coating surface can be tuned by the varying O_2 content in the gas mixture during the deposition.Though still acceptable,the mechanical strength is reduced after PECVD,which is due to the plasma etching.
出处 《Plasma Science and Technology》 SCIE EI CAS CSCD 2016年第4期424-429,共6页 等离子体科学和技术(英文版)
基金 supported by National Natural Science Foundation of China(Nos.11175024,11375031) the Beijing Institute of Graphic and Communication Key Project of China(No.23190113051) the Shenzhen Science and Technology Innovation Committee of China(No.JCYJ20130329181509637) BJNSFC(No.KZ201510015014) the State Key Laboratory of Electrical Insulation and Power Equipment of China(No.EIPE15208)
关键词 microporous polypropylene membrane lithium-ion battery plasma treatment and SiO_x coating microporous polypropylene membrane lithium-ion battery plasma treatment and SiO_x coating
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