Tunable negative permittivity behavior and electromagnetic shielding performance of silver/silicon nitride metacomposites

被引:100
作者
Cheng, Chuanbing [1 ]
Jiang, Yuliang [2 ]
Sun, Xiao [1 ]
Shen, Jianxing [1 ]
Wang, Tailin [1 ]
Fan, Guohua [2 ]
Fan, Runhua [2 ,3 ]
机构
[1] Qilu Univ Technol, Sch Mat Sci & Engn, Key Lab Proc & Testing Technol Glass & Funct Cera, Shandong Acad Sci, Jinan 250353, Peoples R China
[2] Shandong Univ, Key Lab Liquid Solid Struct Evolut & Proc Mat, Minist Educ, Jinan 250061, Peoples R China
[3] Shanghai Maritime Univ, Coll Ocean Sci & Engn, Shanghai 201306, Peoples R China
基金
中国国家自然科学基金;
关键词
Metacomposite; Metamaterial; Negative permittivity; Electromagnetic shielding; LOW DIELECTRIC LOSS; POLYMER COMPOSITES; ELECTRICAL-CONDUCTIVITY; CARBON NANOTUBE; NANOCOMPOSITES; CERAMICS; FILMS; THIN; METAMATERIALS; FABRICATION;
D O I
10.1016/j.compositesa.2019.105753
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The recent rise of metacomposites offered a new research strategy for electromagnetic shielding materials owing to their negative electromagnetic parameters, such as negative permittivity. Herein, we prepared silver/silicon nitride (Ag/Si3N4) metacomposites with tunable negative permittivity by a facile impregnation-calcination process, and explored their electrical conductivity, permittivity and electromagnetic shielding properties. As the Ag content increased, formative metal networks in the composites rendered their conductivity characteristic changing from a hopping conductivity to a metal-like conductivity. Tunable negative permittivity behavior combined with enhanced shielding effectiveness (SE) was observed at 2-18 GHz in the metacomposites with high Ag contents. The plasma-like negative permittivity was accounted for by a low frequency plasmonic state of free electrons in the inductive Ag networks, and the frequency band and absolute magnitude of negative permittivity could be adjusted by controlling Ag content, which was well described by Drude model. The average total SE of our obtained metacomposite could reach similar to 30 dB, and the reflection was the primary shielding mechanism, which was attributed to the intense impedance mismatching stemmed from the negative permittivity. Our work opens up the possibility of designing metacomposites for promising electromagnetic shielding materials, promoting their application in microwave field.
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页数:10
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