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Thermal stability of carbon nanotubes probed by anchored tungsten nanoparticles

机译:锚定的钨纳米粒子探测的碳纳米管的热稳定性

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摘要

The thermal stability of multiwalled carbon nanotubes (CNTs) was studied in high vacuum using tungsten nanoparticles as miniaturized thermal probes. The particles were placed on CNTs inside a high-resolution transmission electron microscope equipped with a scanning tunneling microscope unit. The setup allowed manipulating individual nanoparticles and heating individual CNTs by applying current to them. CNTs were found to withstand high temperatures, up to the melting point of 60-nm-diameter W particles (∼3400 K). The dynamics of W particles on a hot CNT, including particle crystallization, quasimelting, melting, sublimation and intradiffusion, were observed in real time and recorded as a video. Graphite layers reel off CNTs when melted or premelted W particles revolve along the tube axis.
机译:使用钨纳米颗粒作为小型热探针,在高真空下研究了多壁碳纳米管(CNT)的热稳定性。将颗粒放置在配备有扫描隧道显微镜单元的高分辨率透射电子显微镜内的CNT上。该设置允许操作单个纳米颗粒并通过向其施加电流来加热单个CNT。发现碳纳米管可以承受高达60纳米直径W粒子(约3400 K)的熔点的高温。实时观察到热CNT上W粒子的动力学,包括粒子结晶,准仿晶,熔化,升华和内部扩散,并将其记录为视频。当熔化或预熔化的W粒子沿管轴旋转时,石墨层会卷起CNT。

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