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A simultaneous increase in the thermal and electrical transport in carbon nanotube yarns induced by inter-tube metallic welding

机译:管间金属焊接引起的碳纳米管纱线的热和电传输同时增加

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摘要

Vertically aligned arrays of multiwall carbon nanotubes (MWCNT) were decorated with gold (Au) nanoparticles of different diameter and areal densities and spun into yarns. The melting point of Au nanoparticles determined by differential scanning calorimetry was approximately 260 °C, well below the oxidation temperature of carbon. A continuous yarn was formed while pulling out a bundle of CNTs from the metalized CNT array. Relatively low temperature (300 °C) thermal processing of the metalized yam resulted in a 30% improvement in thermal conductivity, 40% increase in electrical conductivity and a 4x increase in elastic modulus. Cross-sections of the yarn were examined with transmission electron microscopy to characterize the physical nature of the metal-nanotube interface. The deposition procedure described to decorate the nanotube yarns is easily scalable to larger CNT arrays or other configurations for commercial applications, such as medical implants, lightweight conductors, smart uniforms for the soldiers, and conformal electronics in aerospace industry.
机译:用不同直径和面密度的金(Au)纳米粒子装饰垂直排列的多壁碳纳米管(MWCNT)阵列,然后纺成纱线。通过差示扫描量热法测定的Au纳米颗粒的熔点约为260℃,远低于碳的氧化温度。从金属化的CNT阵列中拉出一束CNT时,形成了连续的纱线。金属丝的相对低温(300°C)热处理导致热导率提高30%,电导率提高40%,弹性模量提高4倍。用透射电子显微镜检查纱线的横截面以表征金属-纳米管界面的物理性质。所述用于装饰纳米管纱线的沉积程序可轻松扩展至更大的CNT阵列或用于商业应用的其他配置,例如医疗植入物,轻质导体,士兵的智能制服以及航空航天工业中的保形电子产品。

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