材料科学
介电常数
碳纳米管
渗流阈值
纳米复合材料
复合材料
渗透(认知心理学)
导电体
超材料
德鲁德模型
相对介电常数
电阻率和电导率
凝聚态物理
电介质
光电子学
工程类
物理
生物
电气工程
神经科学
作者
Chuanbing Cheng,Runhua Fan,Yanrong Ren,Tao Ding,Lei Qian,Jiang Guo,Xiaofeng Li,Liqiong An,Yanhua Lei,Yansheng Yin,Zhanhu Guo
出处
期刊:Nanoscale
[Royal Society of Chemistry]
日期:2017-01-01
卷期号:9 (18): 5779-5787
被引量:181
摘要
) nanocomposites with multi-walled carbon nanotubes (MWCNTs) uniformly dispersed in the alumina matrix were prepared by hot-pressing sintering. As the MWCNT content increased, the formed conductive MWCNT networks led to the occurrence of the percolation phenomenon and a change of the conductive mechanism. Two different types of negative permittivity (i.e., resonance-induced and plasma-like) were observed in the composites. The resonance-induced negative permittivity behavior in the composite with a low nanotube content was ascribed to the induced electric dipole generated from the isolated MWCNTs. The frequency dispersions of such negative permittivity can be fitted well by the Lorentz model, while the observed plasma-like negative permittivity behavior in the composites with MWCNT content exceeding the percolation threshold could be well explained by the low frequency plasmonic state generated from conductive nanotube networks using the Drude model. This work is favorable to revealing the generation mechanism of negative permittivity behavior and will greatly facilitate the practical applications of metamaterials.
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