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Defect-driven room-temperature coalescence of double-walled carbon nanotubes

机译:缺陷驱动的双壁碳纳米管室温聚结

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摘要

Room-temperature (RT) coalescence of double-walled carbon nanotubes has been observed for the first time. A combined pre-treatment of localized electron irradiation, Joule heating, and electromigration leads to the formation of large vacancy clusters, which can survive for tens of seconds during surface reconstruction. The dangling bonds of the edge atoms are highly reactive and thus promote the coalescence even at RT.
机译:首次观察到双壁碳纳米管的室温(RT)聚结。局部电子辐照,焦耳热和电迁移的组合预处理导致形成大的空位簇,该空位簇在表面重建期间可以存活数十秒。边缘原子的悬挂键具有高反应性,因此即使在室温下也能促进聚结。

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