Chemical Vapor Deposition Based Synthesis of Carbon Nanotubes and Nanofibers Using a Template Method
Синтез углеродных нанотрубок и нановолокон методом химического осаждения из паровой фазы с использованием шаблона
1998-01-19
SCID: 54.1/9wa4tamu
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Ni catalystalumina template membranecarbon nanofiberscarbon nanotubeschemical vapor deposition
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Abstract (AI)
We have developed a new approach for preparing graphitic carbon nanofiber and nanotube ensembles. This approach entails chemical vapor deposition (CVD) based synthesis of carbon within the pores of an alumina template membrane with or without a Ni catalyst. Ethylene or pyrene was used in the CVD process with reactor temperatures of 545 °C for Ni-catalyzed CVD and 900 °C for the uncatalyzed process. The resultant carbon nanostructures were uniform hollow tubes with open ends. Increasing the deposition time converted the carbon nanotubes into carbon nanofibers. Transmission electron microscopy and electron diffraction data show the as deposited graphitic carbon nanofibers synthesized with the Ni catalyst were not highly ordered. Heating the carbon-containing membrane at 500 °C for 36 h, however, converts the carbon nanofibers into highly ordered graphite. The electron diffraction data show a spotted diffraction pattern characteristic of single-crystal graphite with the graphitic planes parallel to the long axis of the nanofibers.
Key Findings
1
A template-assisted CVD method synthesized ensembles of graphitic carbon nanotubes and nanofibers within alumina membrane pores.
2
As-deposited Ni-catalyzed nanofibers were poorly ordered, but heating at 500 °C for 36 hours produced highly ordered graphite.
3
Diffraction indicated single-crystal-like graphite with graphitic planes aligned parallel to the nanofiber long axis.
4
Ethylene or pyrene precursors enabled deposition at 545 °C with Ni catalysis and 900 °C without a catalyst.
5
The resulting carbon nanostructures were uniform, hollow, and open-ended; longer deposition converted nanotubes into nanofibers.
Research Object
Graphitic carbon nanotube and nanofiber ensembles synthesized within alumina template membrane pores
Research Subject
The effects of CVD conditions, Ni catalysis, deposition time, and post-deposition heating on nanostructure morphology and graphitic ordering
Publication Details
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1998-01-19
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