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High-Performance, Lightweight Coaxial Cable from Carbon Nanotube Conductors

机译:碳纳米管导体制成的高性能,轻型同轴电缆

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Coaxial cables have been constructed with carbon nanotube (CNT) materials serving as both the inner and outer conductors. Treatment of the CNT outer and inner conductors with KAuBr4 was found to significantly reduce the attenuation of these cables, which demonstrates that chemical agents can be used to improve power transmission through CNT networks at high frequencies (150 kHz-3 GHz). For cables constructed with a KAuBr4-treated CNT outer conductor, power attenuation per length approaches parity with cablesconstructed from metallic conductors at significantly lower weight per length (i.e., 7.1 g/m for CNT designs compared to 38.8 g/ m for an RG-S8 design). A relationship between the thickness of the CNT outer conductor and the cable attenuation was observed and used to estimate the effective skin depth at high frequency. These results establish reliable, reproducible methods for the construction of coaxial cables from CNT materials that can facilitate further investigation of their performance in high-frequency transmission structures, and highlight a specific opportunity for significant reduction in coaxial cable mass.
机译:同轴电缆已使用碳纳米管(CNT)材料作为内部和外部导体。发现用KAuBr4处理CNT外部和内部导体可以显着减少这些电缆的衰减,这表明化学试剂可用于改善高频(150 kHz-3 GHz)下通过CNT网络的功率传输。对于用KAuBr4处理过的CNT外导体构造的电缆,每长度的功率衰减与由金属导体制成的电缆的奇偶性更低,即每长度的重量很轻(即CNT设计为7.1 g / m,而RG-S8为38.8 g / m设计)。观察到CNT外部导体的厚度与电缆衰减之间的关系,并用于估计高频下的有效趋肤深度。这些结果为使用CNT材料构造同轴电缆建立了可靠的,可重复的方法,该方法可以方便进一步研究其在高频传输结构中的性能,并为显着减少同轴电缆质量提供了特殊机会。

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