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Complex Permittivity and Permeability of Single- and Multi-walled Carbon Nanotubes at High Microwave Frequencies and Quantifying Microwave Absorption

机译:高微波频率下单壁碳纳米管的复杂介电常数和渗透率,并定量微波吸收

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The present paper reports high frequency microwave characterization of both the single- and multi walled carbon nanotubes and quantifying microwave absorption through the measurements of S parameter. The dielectric properties for these nanostructured carbon materials are measured using the rectangular waveguide technique and are determined in the frequency regime ranging 8-40GHz. The data is represented in terms of both the real and imaginary parts of permittivity and permeability. These results represents a milestone in such measurements for nanoscale cylindrical conductors i.e. carbon nanotube structures which serves as a model example and it covers a wide frequency range using an efficient, noninvasive and highly accurate technique that is ideal for high frequency characterization for a variety of nanoscale materials.
机译:本文介绍了单壁和多壁碳纳米管的高频微波表征,通过S参数测量来定量微波吸收。使用矩形波导技术测量这些纳米结构碳材料的电介质性能,并在频率调节范围范围内测量8-40GHz。这些数据以介电常数和渗透率的真实和虚部而言表示。这些结果代表了纳米级圆柱形导体的这种测量中的里程碑,即用作模型示例并且它使用高效,非侵入性和高准确的技术涵盖了宽频率范围,这是对于各种纳米级的高频表征的理想选择材料。

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