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Direct laser-patterned ultra-wideband antennae with carbon nanotubes

机译:带有碳纳米管的直接激光图案化超宽带天线

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摘要

Ultra-wideband (UWB), a radio transmission technology with wide bandwidth exceeding the minimum of 500 MHz or at least 20% of the center frequency, is a revolutionary approach for short-range high-bandwidth wireless communication. In this study, carbon nanotube (CNT) UWB antennas by direct laser-patterning technology have been successfully designed, fabricated and characterized. In contrast with traditional fabrication methods, the direct laser-patterning technology offers an exceptional potential for custom-designed, high-complexity and accuracy device fabrication. The “engraving” process on CNTs exposed to laser can be attributed to the bond breaking of C–C, evaporation of carbon atoms, and oxidation of CNTs by the oxygen molecules. Numerical analysis and experimental studies provide characteristics of CNT slot antennas with a wide impedance bandwidth (from 3.4 GHz to 14 GHz for S _(11) ≤ ?10 dB), high average radiation efficiency (76%) and fractional bandwidth (121%) with small size of 30 × 30 mm ~(2) . The results indicate the advantages of laser-patterned UWB antennas based on carbon nanotubes, which paves the way for industrial applications, particularly in the world of consumer electronics.
机译:超宽带(UWB)是一种带宽超过最小500 MHz或至少是中心频率至少20%的无线电传输技术,是短距离高带宽无线通信的革命性方法。在这项研究中,通过直接激光图案化技术成功地设计,制造和表征了碳纳米管(CNT)UWB天线。与传统的制造方法相比,直接激光图案化技术为定制设计,高复杂度和精度的器件制造提供了巨大的潜力。暴露在激光下的CNT上的“雕刻”过程可归因于CC的键断裂,碳原子的蒸发以及氧分子对CNT的氧化。数值分析和实验研究提供了具有宽阻抗带宽(对于S _(11)≤?10 dB,从3.4 GHz到14 GHz),高平均辐射效率(76%)和分数带宽(121%)的CNT缝隙天线特性。尺寸为30×30 mm〜(2)。结果表明了基于碳纳米管的激光图案UWB天线的优势,这为工业应用铺平了道路,特别是在消费电子领域。

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