Synthesis Methods of Carbon Nanotubes and Related Materials

Методы синтеза углеродных нанотрубок и родственных материалов
Andrea Szabó, C. Perri, Anita Csató, G. Giordano, D. Vuono, J.B. Nagy
2010-05-07

arc dischargecarbon nanotubeschemical vapor depositionlaser ablationsupported transition-metal catalysts
The challenge on carbon nanotubes is still the subject of many research groups. While in the first years the focus was on the new synthesis methods, new carbon sources and support materials, recently, the application possibilities are the principal arguments of the studies. The three main synthesis methods discussed in this review are the arc discharge, the laser ablation and the chemical vapour deposition (CVD) with a special regard to the latter one. In the early stage of the nanotube production the first two methods were utilized mainly for the production of SWNTs while the third one produced mainly MWNTs. The principle of CVD is the decomposition of various hydrocarbons over transition metal supported catalyst. Single-walled (SWNT), multi-walled (MWNT) and coiled carbon nanotubes are produced. In some case, interesting carbonaceous materials are formed during the synthesis process, such as bamboo-like tubes, onions, horn-like structures. In this paper, we refer to the progresses made in the field of the synthesis techniques of carbon nanotubes in the last decade.
1
CVD involves decomposing hydrocarbons over transition-metal-supported catalysts and receives particular emphasis in the review.
2
Carbon nanotube synthesis can produce SWNTs, MWNTs, and coiled nanotubes, along with structures such as bamboo-like tubes, carbon onions, and horn-like forms.
3
Historically, arc discharge and laser ablation primarily produced single-walled nanotubes, whereas CVD mainly produced multi-walled nanotubes.
4
The review examines three principal carbon-nanotube synthesis methods: arc discharge, laser ablation, and chemical vapor deposition (CVD).
5
The review summarizes advances in carbon-nanotube synthesis techniques over the preceding decade, reflecting a shift toward application-driven research.

carbon nanotube synthesis processes and the resulting carbon nanotubes and related carbonaceous materials

synthesis techniques, carbon sources, catalyst-supported CVD mechanisms, and the resulting nanotube types and morphologies

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2010-05-07
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Authors
Andrea Szabó
C. Perri
Anita Csató
G. Giordano
D. Vuono
J.B. Nagy
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