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Cutting single-walled carbon nanotubes

机译:切割单壁碳纳米管

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A two-step process is utilized for cutting single-walled carbon nanotubes (SWNTs). The first step requires the breakage of carbon-carbon bonds in the lattice while the second step is aimed at etching at these damage sites to create short, cut nanotubes. To achieve monodisperse lengths from any cutting strategy requires control of both steps. Room-temperature piranha and ammonium persulfate solutions have shown the ability to exploit the damage sites and etch SWNTs in a controlled manner. Despite the aggressive nature of these oxidizing solutions, the etch rate for SWNTs is relatively slow and almost no new sidewall damage is introduced. Carbon-carbon bond breakage can be introduced through fluorination to ~C_2F, and subsequent etching using piranha solutions has been shown to be very effective in cutting nanotubes. The final average length of the nanotubes is approximately 100 nm with carbon yields as high as 70-80 percent.
机译:采用两步过程来切割单壁碳纳米管(SWNT)。第一步需要断开晶格中的碳-碳键,而第二步旨在刻蚀这些损伤部位,以形成短而切的纳米管。为了从任何切割策略中获得单分散长度,需要控制两个步骤。室温食人鱼和过硫酸铵溶液显示出能够以受控方式利用损伤部位和腐蚀单壁碳纳米管的能力。尽管这些氧化溶液具有侵蚀性,但SWNT的蚀刻速率相对较慢,几乎没有引入新的侧壁损伤。碳-碳键断裂可通过氟化作用引入到〜C_2F,随后使用食人鱼溶液进行的蚀刻已显示出对切割纳米管非常有效。纳米管的最终平均长度约为100 nm,碳收率高达70-80%。

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