Hostname: page-component-586b7cd67f-dsjbd Total loading time: 0 Render date: 2024-11-26T23:18:18.071Z Has data issue: false hasContentIssue false

Growth of Carbon Nanotube Forests on Carbon Fibers with a SiO2 Interlayer

Published online by Cambridge University Press:  30 July 2012

Erica F. Antunes
Affiliation:
Instituto de Ciência e Tecnologia, Universidade Federal de São Paulo, 12231-280, São José dos Campos, SP, Brasil
Viviane Q. da Silva
Affiliation:
Laboratório Associado de Sensores e Materiais, Instituto Nacional de Pesquisas Espaciais, CP 515, 12227-010, São José dos Campos, SP, Brasil
Vagner E. C. Marques
Affiliation:
Laboratório Associado de Sensores e Materiais, Instituto Nacional de Pesquisas Espaciais, CP 515, 12227-010, São José dos Campos, SP, Brasil
Lilian Siqueira
Affiliation:
Laboratório Associado de Sensores e Materiais, Instituto Nacional de Pesquisas Espaciais, CP 515, 12227-010, São José dos Campos, SP, Brasil
Evaldo J. Corat
Affiliation:
Laboratório Associado de Sensores e Materiais, Instituto Nacional de Pesquisas Espaciais, CP 515, 12227-010, São José dos Campos, SP, Brasil
Get access

Abstract

Ceramic barriers avoid catalyst diffusion to produce better multiwall carbon nanotubes (CNT) on carbon fiber fabrics (CF). We developed a simple method to produce efficiently a silica layer from TEOS pyrolysis at similar conditions of CNT growth from camphor and ferrocene mixtures. This protective layer prevents iron diffusion and allows the vertical alignment of CNTs.

Type
Articles
Copyright
Copyright © Materials Research Society 2012

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

REFERENCES

Wicks, S. S., de Villoria, R.G., and Wardle, B. L.. Composite Science and Technology, 70, 2028 (2010).CrossRefGoogle Scholar
Garcia, E. J., Wardle, B. L., and Hart, A. J., Yamamoto, N.. Composite Science and Technology 68, 20342041 (2008).CrossRefGoogle Scholar
Veedu, V. P., Cao, A., Li, X., Ma, K., Soldano, C., Kar, S., Ajayan, P. M., and Ghasemi-Nejhad, M. N., Nature 5, 457462 (2006).CrossRefGoogle Scholar
Yamamoto, N., Hart, A. J., Garcia, E. J., Wicks, S. S., Duong, H. M., Slocum, A. H., and Wardle, B. L.. Carbon 47, 551560 (2009).CrossRefGoogle Scholar
de Resende, V. G., Antunes, E. F., de Oliveira Lobo, A., Oliveira, D. A. L., Trava-Airoldi, V. J., and Corat, E. J., Carbon 48, 36553658(2010).CrossRefGoogle Scholar
An, F., Lu, C., Guo, J., He, S., Lu, H., and Yang, Y.. Applied Surface Science 258, 10691076 (2011).CrossRefGoogle Scholar
Lv, P., Feng, Yi-y, Zhang, P., Chen, H-m, Zhao, N., and Feng, W.. Carbon 49, (2011) 46654673.CrossRefGoogle Scholar
Al-Oweini, R. and El-Rassy, H.. Journal of Molecular Structure 919, 140145(2009).CrossRefGoogle Scholar
Gopal, N. O., Narasimhulu, K. V., and Rao, J. L., Acta Part A 60, 24412448(2004).CrossRefGoogle Scholar
Duran, A., Fernandez-Navarro, J. M., Casariego, P., and Joglar, A., Journal of Non-Crystalline Solids 82, 6977 (1986).CrossRefGoogle Scholar
Dresselhaus, M.S., Dresselhaus, G., Saito, R., and Jorio, A., Physics Report 409, 4799 (2005).CrossRefGoogle Scholar
Ferrari, A.C., and Robertson, J.. Physical Review B 61, 1409514107 (2000).CrossRefGoogle Scholar
Ferrari, A.C., and Robertson, J., Physical Review B 64, 075414-1-075414-13(2001).CrossRefGoogle Scholar
Ebbesen, T.W., and Takada, T., Carbon 33, 973978(1995).CrossRefGoogle Scholar
Matthews, M. J., Pimenta, M. A., Dresselhaus, G., and Endo, M., Physical Review B 59, R6585R6588 (1999).CrossRefGoogle Scholar
Antunes, E. F., Lobo, A.O., Corat, E.J., and Trava-Airoldi, V.J., Carbon 45, 913921 (2007).CrossRefGoogle Scholar
Barros, E. B., de Souza Filho, A.G., Son, H., and Dresselhaus, M.S., Vibrational Spectroscopy 45, 122127(2007).CrossRefGoogle Scholar
Ferrari, A.C., Meyer, J.C., Scardaci, V., Casiraghi, C., Lazzeri, M., Mauri, F., Piscanec, S., Jiang, D., Novoselov, K.S., Roth, S., and Geim, A.K., Physical Review Letters 97, 187401-1-187401-4 (2006).Google Scholar