A Hierarchical Approach to Purify and Functionalize Pristine Carbon Nanotubes

Author:

Mansoor M.1

Affiliation:

1. Institute of Industrial Control Systems

Abstract

A step-by-step, hierarchical approach is explored in the present work to purify and functionalize carbon nanotubes synthesized by chemical vapor deposition. Attempts are made to purify and functionalize CNTs without extinguishing their aspect ratios. The carbon impurities are removed by thermal oxidation, whilst the unprotected metallic catalyst particles are eliminated by wet oxidation, subsequently; CNT bundles are de-roped by surfactant assisted sonication. Finally, protected metallic catalyst particles are removed and functional groups (hydroxyl and carboxyl) are attached by acid treatment and wet oxidation, respectively. The derivate CNTs are characterized using zeta potential measurements, TGA, XRD, FTIR and SEM. The characterization showed that in optimum experimental conditions the catalytic particles are removed upto 80%, the carbon impurities are eliminated upto 95% and chemical functionalities of hydroxyl and carboxyl is occurred with noticeable de-roping of the CNT bundles.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference17 articles.

1. S. Porroa, S. Mussoa, M. Vinante, L. Vanzetti, M. Anderle, F. Trottac, and A. Tagliaferroa; Physica E37 (2007), p-58.

2. D. Yuan and J. Liu; Small 3, No. 3, (2007), p-366.

3. Zhi-Min Dang, L. Wang, and Li-Pei Zhang; J Nanomater. Article ID 83583 (2006), p-1.

4. V. Djordjević, J. Djustebek, J. Cvetićanin, S. Velićknović, M. Veljković, M. Bokorov, B. Babić Stojić, and O. Nešković; ; Jr. Opto and Adv Mat Vol. 8, No. 4, (2006), p-1631.

5. Jean-Marc Bonard, Th. Stora, Jean-Paul Salvetat, F. Maier, Th. Stöckli, C. Duschl, L. Forró, W. A. Heer and A. Châtelain; Adv. Mater. 9, 10, (1997), p-827.

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