The fluorination of purified HiPco single-wall carbon nanotubes to a stoichiometry CF x ( x ⩽ 0.2) followed by pyrolysis of the partially fluorinated nanotubes up to 1000 °C was found to have “cut” the nanotubes to a range of short lengths (average <50 nm). The pyrolysis process was monitored in-situ with TGA-FTIR. The fluorine was driven off the nanotube structure in the form of COF 2 and CF 4 . The “cut” nanotubes have been characterized by Raman, ATR-IR, EDAX, and AFM measurements. Short bundles composed of strongly interacting individual nanotubes were found in the “cut” nanotube sample. The short lengths and specific reactivities should lead to novel applications for these nanotubes.
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Gu et al. (2002) studied this question.
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