详细信息

Microcellular foamed polyamide 6/carbon nanotube composites withsuperior electromagnetic wave absorption    

文献类型:期刊文献

中文题名:Microcellular foamed polyamide 6/carbon nanotube composites withsuperior electromagnetic wave absorption

作者:Menglong Xu[1,2,3];Linfeng Wei[2];Li Ma[2];Jiawei Lu[1];Tao Liu[1];Ling Zhang[3];Ling Zhao[1];Chul B.Park[2]

机构:[1]State Key Laboratory of Chemical Engineering,School of Chemical Engineering,East China University of Science and Technology,Shanghai 200237,China;[2]Department of Mechanical and Industrial Engineering,University of Toronto,5 King’s College Road,Toronto,Ontario M5S 3G8,Canada;[3]Shanghai Engineering Research Center of Hierarchical Nanomaterials,School of Materials Science and Engineering,East China University of Science and Technology,Shanghai 200237,China

年份:2022

期号:22

起止页码:215

中文期刊名:Journal of Materials Science & Technology

外文期刊名:材料科学技术(英文版)

收录:CSTPCD;;Scopus;CSCD:【CSCD2021_2022】;PubMed;

基金:This work was funded by the National Key Research and Development Program of China(No.2016YFB0302200);the Key Research and Development Plan of Anhui Province(No.202104g01020003);the Fundamental Research Funds for the Central Universities(No.JKA012011002);the“111 Project”(No.B20031);Also,this research was supported by the China Scholarship Council(No.201906740084)during the work at the University of Toronto.Additional support was provided by Feringa Nobel Prize Scientist Joint Research Center.We would also like to gratefully thank Dr.Biao Zhao for assistance with electromagnetic data analysis in this research.Supplem。

语种:英文

中文关键词:Polymer nanocomposites;Supercritical CO_(2)foaming;Void fraction;Dielectric properties;Electromagnetic wave absorption

摘要:Electromagnetic (EM) wave pollution causing damage to precision equipment and threatening thehealth of living organisms has attracted considerable attention. Herein, promising microcellular foamedpolyamide 6 (PA6)/carbon nanotube (CNT) composites for highly efficient EM wave absorption were successfully fabricated using supercritical CO_(2) foaming. Nanocomposites foams with a void fraction rangingfrom 38.7% to 85.1% were achieved, providing a platform to assess the correlation of the electrical conductivity, the dielectric permittivity and the EM wave absorption properties with porosity. Notably, theFoam-257.5C sample with a void fraction of 38.7% exhibited outstanding EM wave absorption characteristics at a thickness of only 1.59 mm and an ultra-low reflection loss value of -55.3 dB (99.9997% wave absorption). Most importantly, the effective absorption bandwidth (EAB) of the Foam-257.5C sample couldcover the entire Ku band (12.4–18 GHz) by slightly adjusting the thickness from 1.20 to 1.60 mm. Thesuperior EM wave absorption performance of the Foam-257.5C sample was attributed to multiple reflections and scattering at the solid-gas interfaces, favorable impedance matching due to the existence ofa large polymer-air interface area, conductive loss near the interfaces and interfacial polarization. Thus,this study offers an eco-friendly, simple and versatile methodology to develop high-efficiency, flexiblepolymer-based EM wave absorbents.

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