References

A COMPARATIVE STUDY OF MULTI-WALLED CARBON NANOTUBES PURIFICATION TECHNIQUES


[1] M. Majumdar, N. Chopra, R. Andrews and B. J. Hinds, Nanoscale hydrodynamics: Enhanced flow in carbon nanotubes, Nature 438 (2005), 44.

[2] R. H. Baughman, A. A. Zakhidov and W. A. de Heer, Carbon nanotubes: The route toward applications, Science 297 (2002), 787-792.

[3] H. Luo, Z. Shi, N. Li, Z. Gu and Q. Zhuang, Investigation of the electrochemical and electrocatalytic behaviour of single-wall carbon nanotube film on a glassy carbon electrod, Anal. Chem. 73 (2001), 915-920.

[4] J. M. Nugent, K. S. V. Santhanam, A. Rubio and P. M. Ajayan, Fast electron transfer kinetics on multi-walled carbon nanotube microbundle electrodes, Nano Lett. 1 (2001), 87-91.

[5] C. Journet, W. K. Maser, P. Bernier and A. Loiseau et al., Large-scale production of single-walled carbon nanotubes by the electric-arc technique, Nature 388 (1997), 756-758.

[6] T. Guo, P. Nikolaev, A. Thess, D. T. Colbert and R. E. Smalley, Catalytic growth of single-walled nanotubes by laser vapourization, Chem. Phys. Lett. 243(1-2) (1995), 49-54.

[7] A. M. Cassell, J. A. Raymakers, J. Kong and H. J. Dai, Large scale CVD synthesis of single-walled carbon nanotubes, Phys. Chem. B 103(31) (1999), 6484-6492.

[8] S. C. Tsang, Y. K. Chen, P. J. F. Harris and M. L. H. Green, A simple chemical method of opening and filling carbon nanotubes, Nature 372 (1994), 159-162.

[9] T. Saito, K. Matsushige and K. Tanaka, Chemical treatment and modification of multi-walled carbon nanotubes, Physica B 323 (2002), 280-283.

[10] K. Esumib, M. Ishigamib, A. Nakajimab, K. Sawadab and H. Hondab, Chemical treatment of carbon nanotubes, Carbon 34 (1996), 279-281.

[11] P. M. Ajayan, T. W. Ebbesen, T. Ichihashi, S. Iijima, K. Tanigaki and H. Hiura, Opening carbon nanotubes with oxygen and implications for filling, Nature 362 (1993), 522-526.

[12] K. Tohji, H. Takahasi, Y. Shinoda, I. Motsuoka and Y. Saito et al., Purification procedure of single-walled nanotubes, Phys. Chem. B 101 (1996), 1974-1978.

[13] K. B. Shelimov, R. O. Esenaliev, A. G. Rinzler, C. B. Huffman and R. E. Smalley, Purification of single-wall carbon nanotubes by ultrasonically assisted filtration, Chem. Phys. Lett. 282 (1998), 429-434.

[14] S. Niyogi, H. Hu, M. A. Hamon, P. Bhowmik, B. Zhao and S. M. Rozenzhak et al., Chromatographic purification of soluble single-walled carbon nanotubes (s-swnts), Amer. Chem. Soc. 123 (2001), 733-734.

[15] M. A. Ermakova, D. Y. Ermakov, A. L. G. G. Chuvilin and Kuvshinov, Catal. 201 (2001), 183-197.

[16] Chieng-Ming Chen, Mi Chen, Yong-Wang Peng, Cheng-Hsiung Lin, Li-Wei Chang and Chia-Fu Chen, Microwave digestion and acidic treatment procedures for the purification of multi-walled carbon nanotubes, Diamond & Related Materials 14 (2005), 798- 803.

[17] M. S. Dresselhaus, G. Dresselhaus, A. Jorio and Souza Filho et al., Raman spectroscopy on isolated single-wall carbon nanotubes, Carbon 40(12) (2002), 2043-2061.

[18] V. Datsyuk, M. Kalyva, K. Papagelis, J. Parthenios, D. Tasis, A. Siokou, I. Kallitsis and C. Galiotis, Chemical oxidation of multi-walled carbon nanotubes, Carbon 46 (2008), 833-840.

[19] S. Osswald, E. Flahaut, H. Ye and Y. Gogotsi, Elimination of D-band in Raman spectra of double-wall carbon nanotubes by oxidation, Chem. Phys. Lett. 402 (2005), 422-427.

[20] H. Zhang, C. H. Sun, F. Li, H. X. Li and H. M. Cheng, Purification of multi-walled carbon nanotubes by annealing and extraction based on the difference in van der Waals potential, Phys. Chem. B 110 (2006), 9477-9481.