Direct Spinning of Carbon Nanotube Fibers from Chemical Vapor Deposition Synthesis
Прямое прядение волокон из углеродных нанотрубок при синтезе методом химического осаждения из паровой фазы
2004-03-16
SCID: 54.1/ktzc7fwu
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carbon nanotube fiberschemical vapor depositioncontinuous fiber assemblydirect spinningiron nanocatalyst
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Abstract (AI)
Many routes have been developed for the synthesis of carbon nanotubes, but their assembly into continuous fibers has been achieved only through postprocessing methods. We spun fibers and ribbons of carbon nanotubes directly from the chemical vapor deposition (CVD) synthesis zone of a furnace using a liquid source of carbon and an iron nanocatalyst. This process was realized through the appropriate choice of reactants, control of the reaction conditions, and continuous withdrawal of the product with a rotating spindle used in various geometries. This direct spinning from a CVD reaction zone is extendable to other types of fiber and to the spin coating of rotating objects in general.
Key Findings
1
Continuous product withdrawal with a rotating spindle enables fiber formation through controlled reactants and reaction conditions.
2
The direct-spinning approach can potentially be extended to other fiber types and to spin coating rotating objects.
3
The process uses a liquid carbon source and an iron nanocatalyst to produce carbon nanotube fibers without postprocessing.
4
The study demonstrates direct spinning of continuous carbon nanotube fibers and ribbons from the chemical vapor deposition synthesis zone.
Research Object
carbon nanotube fibers and ribbons produced directly in the chemical vapor deposition synthesis zone
Research Subject
direct spinning and continuous assembly of carbon nanotubes into fibers and ribbons under controlled CVD reaction conditions
Publication Details
Publication Date
2004-03-16
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