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Electromagnetic characterisation of multi-wall carbon nanotube–doped fluorine tin oxide for transparent antenna applications

机译:透明天线应用中多壁碳纳米管掺杂的氟氧化锡的电磁表征

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Here, the authors present an improved transparent conducting thin film by adding multi-wall carbon nanotube (MWCNT) to fluorine tin oxide (FTO). The use of carbon nanotubes considerably increases the surface conductivity of the FTO thin film. The resulting composition is deposited on a Pyrex substrate by the spray pyrolysis technique. Measurement results show high optical transmittance (about 77%) in the visible region and low electrical surface resistance (as low as 5 omega/$square $x25fb;). The electromagnetic characteristics of the resulting layer $lpar sigma comma ; arepsilon _rpar $(sigma,epsilon r) are obtained over 0.1-20 GHz using the open-ended coaxial probe (OECP) method. The conductivity (sigma) is in the order of $105lpar {m S}/{m m}par $105(S/m) and relative permittivity $lpar arepsilon _rpar $(epsilon r) is in the order of $106$106 at low frequencies and in the order of $105$105 at high frequencies, which is suitable for transparent antenna applications. To verify the measurements, the layer is numerically simulated using the obtained experimental data. The simulation results were found to be in good agreement with the experimental ones.
机译:在这里,作者提出了一种改进的透明导电薄膜,其方法是在氟氧化锡(FTO)中添加多壁碳纳米管(MWCNT)。碳纳米管的使用大大增加了FTO薄膜的表面电导率。通过喷雾热解技术将所得的组合物沉积在派热克斯基底上。测量结果表明,可见光区域的光透射率高(约77%),表面电阻低(低至5Ω/平方squarex25fb;)。所得层的电磁特性$ lpar sigma 逗号;使用开放式同轴探头(OECP)方法在0.1-20 GHz上获得 varepsilon _r rpar $(sigma,epsilon r)。电导率(sigma)约为$ 105 lpar { rm S} / { rm m} rpar $ 105(S / m),相对介电常数$ lpar varepsilon _r rpar $(epsilon r)在低频的订购价为$ 106 $ 106,高频的订购价为$ 105 $ 105,适用于透明天线应用。为了验证测量结果,使用获得的实验数据对层进行了数值模拟。仿真结果与实验结果吻合良好。

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