2008
DOI: 10.1016/j.ssc.2007.10.020
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Synthesis of multi-wall carbon nanotubes by simple pyrolysis

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Cited by 57 publications
(32 citation statements)
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“…It is believed that most of these catalyst particles present at the tips are lost during acid (HCl) treatment. Moreover, it is also believed that catalyst particles are detached from the tips of the CNTs during sonication for the sample preparation of the TEM measurement because they are loosely bound [25]. This may be another reason, why catalyst particles are not seen in TEM image of acid treated CNTs.…”
Section: Resultsmentioning
confidence: 99%
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“…It is believed that most of these catalyst particles present at the tips are lost during acid (HCl) treatment. Moreover, it is also believed that catalyst particles are detached from the tips of the CNTs during sonication for the sample preparation of the TEM measurement because they are loosely bound [25]. This may be another reason, why catalyst particles are not seen in TEM image of acid treated CNTs.…”
Section: Resultsmentioning
confidence: 99%
“…This technique is even simpler than the technique employed by Terrones et al, Rao et al, and Lee et al [11,14,15]. The detailed experimental procedure of the single-stage furnace pyrolysis set-up has been discussed elsewhere [25,26]. In brief, to synthesize various CNs in the present technique, a mixture of 18 mg of catalyst source material ferrocene and 2 ml of carbon source material tetrahydrofuran (THF) is taken in a reaction quartz tube of diameter 1.0 cm and length 70 cm, closed at one end.…”
Section: Experimentalsmentioning
confidence: 99%
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“…The details of preparation method can be found elsewhere. 20,21 Multiwalled carbon nanotubes (CNT) were synthesized by simple pyrolysis method using Benzene and ferrocene at 750 o C. 22 The as prepared CNTs were functionalized by treating with conc. HNO 3 .…”
Section: Methodsmentioning
confidence: 99%
“…Various methods have been developed for the synthesis of carbon nanotubes, including metal catalyzed chemical vapor deposition (CVD), 9,10 arc evaporation, 11 laser ablation of carbon, 12,13 catalytic decomposition 14 and pyrolysis. 15,16 Some of these techniques can produce nanotubes in sizable quantities. However, need of high temperature and reaction time make their manufacturing costs high and still prohibit widespread commercialization.…”
Section: Introductionmentioning
confidence: 99%