Fabrication of ultralong and electrically uniform single-walled carbon nanotubes on clean substrates.
basic_science · Level V
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- Record sourced from PubMed, PMID 19650638.
- Also identified by DOI 10.1021/nl901260b.
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Abstract
We report the controlled growth of ultralong single-wall carbon nanotube (SWNT) arrays using an improved chemical vapor deposition strategy. Using ethanol or methane as the feed gas, monodispersed Fe-Mo as the catalyst, and a superaligned carbon nanotube (CNT) film as the catalyst supporting frame, ultralong CNTs over 18.5 cm long were grown on Si substrates. The growth rate of the CNTs was more than 40 mum/s. No catalyst-related residual material was found on the substrates due to the use of a CNT film as the catalyst supporting frame, facilitating any subsequent fabrication of SWNT-based devices. Electrical transport measurements indicated that the electrical characteristics along a single ultralong SWNT were uniform. We also found that maintaining a spatially homogeneous temperature during the growth process was a critical factor for obtaining constant electrical characteristics along the length of the ultralong SWNTs.
Medical subject headings
- Ethanol
- Iron
- Membranes, Artificial
- Methane
- Molybdenum
- Nanotubes, Carbon