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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Microwave (8–50 GHz) Characterization of Multiwalled Carbon Nanotube Papers Using Rectangular Waveguides
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Microwave (8–50 GHz) Characterization of Multiwalled Carbon Nanotube Papers Using Rectangular Waveguides

机译:使用矩形波导的多壁碳纳米管纸的微波(8–50 GHz)表征

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Multiwalled carbon nanotubes (MWNTs) are characterized at X-, Ku-, Ka-, and Q-bands by rectangular waveguide measurements. The scattering parameters (S-parameters) of thin MWNT papers containing a large ensemble of randomly oriented nanotubes are measured by a vector network analyzer from 8 to 50 GHz. A rigorous extraction algorithm has been developed to compute the effective complex permittivity ( epsiv = epsiv''- jepsiv") and permeability ( mu = mu'' - jmu") of the nanotube papers from the measured -parameters. The extracted effective medium parameters are verified by finite-element simulations using Ansoft''s High Frequency Structure Simulator (HFSS). The uncertainties for this characterization method are analyzed. The systematic uncertainties are found larger at lower frequencies than at higher frequencies. The extracted conductivity of the nanotube papers is in the range of 810-1500 S/m and the dielectric constant is from 250 to 700. The extracted complex permittivity can be fitted with the Drude-Lorentz model for the 8-50-GHz frequency range. The effective medium theory is then applied to remove the impact of air in the nanotube paper.
机译:多壁碳纳米管(MWNT)通过矩形波导测量在X波段,Ku波段,Ka波段和Q波段进行表征。用矢量网络分析仪在8至50 GHz的频率范围内测量包含大量随机取向纳米管的MWNT薄纸的散射参数(S参数)。已经开发出严格的提取算法,以根据测量的参数计算纳米管纸的有效复介电常数(epsiv = epsiv''-jepsiv“)和磁导率(mu = mu''-jmu”)。使用Ansoft的高频结构模拟器(HFSS)通过有限元模拟对提取的有效介质参数进行验证。分析了这种表征方法的不确定性。发现系统不确定性在较低频率下比在较高频率下更大。提取的纳米管纸的电导率在810-1500 S / m的范围内,介电常数在250到700之间。提取的复介电常数可以与Drude-Lorentz模型拟合,用于8-50 GHz频率范围。然后,将有效介质理论应用于消除纳米管纸中空气的影响。

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