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Camphor - a botanical precursor producing garden of carbon nanotubes

机译:樟脑-一种生产碳纳米管的植物前体花园

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摘要

Camphor, a botanical precursor, has been found to produce carbon nanotubes in large quantities; like a nanotube garden containing single-wall, multi-wall and aligned-nanotubes. These products grow as a result of thermal decomposition of camphor in argon atmosphere at 875(+-25) deg C. The novelty of this new precursor lies in the extremely low catalyst requirement for the realization of pure carbon nanotubes. Single-wall nanotubes are found in low quantity, whereas the yield of multi-wall nanotubes is as high as 90 percent. Moreover, vertically aligned nanotubes grow on large-area quartz substrates inserted in the reaction zone. Crystallinity of the as-grown nanotubes is fairly good, much better than that of those generally obtained by CVD using conventional hydrocarbons. Formation of amorphous carbon is almost nil, eliminating the need for post-deposition heat treatment. The presence of unwanted catalyst particles is extremely low.
机译:樟脑是植物的前体,已发现可大量生产碳纳米管。像一个包含单壁,多壁和对齐纳米管的纳米管花园。这些产品是由于在875(+-25)摄氏度的氩气气氛中樟脑热分解而产生的。这种新的前体的新颖之处在于,实现纯碳纳米管的催化剂需求极低。发现单壁纳米管的数量很少,而多壁纳米管的产率高达90%。此外,垂直排列的纳米管在插入反应区的大面积石英基板上生长。所生长的纳米管的结晶度相当好,远优于通常使用常规烃通过CVD获得的结晶度。非晶碳的形成几乎为零,从而无需进行沉积后热处理。不需要的催化剂颗粒的存在极低。

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