113
Views
6
CrossRef citations to date
0
Altmetric
Original Articles

Synthesis of Carbon Nanotube Heterojunctions from the Decomposition of Ethanol

, &

References

  • Dresselhaus , M. S. , Dresselhaus , G. , Charlier , J. C. and Hern´andez , E. 2004 . Electronic, thermal and mechanical properties of carbon nanotubes . Phil. Trans. R. Soc. Lond. A , 362 : 2065 – 2098 .
  • Dupuis , A. 2005 . The catalyst in the CCVD of carbon nanotubes – a review . Progress in Mater. Sci. , 50 : 929 – 961 .
  • Choi , Y. C. and Choi , W. 2005 . Synthesis of Y-junction single-wall carbon nanotubes. . Carbon , 43 ( 13 ) : 2737 – 2741 .
  • Kennedy , L. J. , Vijaya , J. J. , Sekaran , G. , Joseph , J. , Rani , J. D. and Pragasam , J. 2006 . Bulk preparation and characterization of mesoporous carbon nanotubes by catalytic decomposition of cyclohexane on sol-gel prepared Ni-Mo-Mg oxide catalyst . Mater. Lett. , 60 : 3735 – 3740 .
  • Zheng , L. X. , O'Connell , M. J. , Doorn , S. K. , Liao , X. Z. , Zhao , Y. H. , Akhadov , E. A. , Hoffbauer , M. A. , Roop , B. J. , Jia , Q. X. , Dye , R. C. , Peterson , D. E. , Huang , S. M. , Liu , J. and Zhu , Y. T. 2004 . Ultralong single-wall carbon nanotubes . Nature Mater. , 3 : 673 – 676 .
  • Shirazi , Y. , Tofighy , M. A. , Mohammadi , T. and Pak , A. 2011 . Effects of different carbon precursors on synthesis of multiwall carbon nanotubes: Purification and functionalization . Appl. Surf. Sci. , 257 : 7359 – 7367 .
  • Maruyama , S. , Kojima , R. , Miyauchi , Y. , Chiashi , S. and Kohno , M. 2002 . Low-temperature synthesis of high-purity single-walled carbon nanotubes from alcohol . Chem. Phys. Lett. , 360 : 229 – 234 .
  • Zheng , L. , Liao , X. and Zhu , Y. T. 2006 . Parametric study of carbon nanotube growth via cobalt-catalyzed ethanol decomposition . Mater. Lett. , 60 : 1968 – 1972 .
  • Gutkin , M.Y. and Ovid'ko , I. A. 2009 . Effect of Y-junction nanotubes on strengthening of nanocomposites . Scr. Mater. , 61 : 1149 – 1152 .
  • Montoro , L. A. , Corio , P. and Rosolen , J. M. 2007 . A comparative study of alcohols and ketones as carbon precursor for multi-walled carbon nanotube growth . Carbon , 45 : 1234 – 1241 .
  • Jin , Z. , Li , X. , Zhou , W. , Han , Z. , Zhang , Y. and Li , Y. 2006 . Direct growth of carbon nanotube junctions by a two-step chemical vapor deposition . Chem. Phys. Lett. , 432 : 177 – 183 .
  • Chai , S.-P. , Zein , S. H. S. and Mohamed , A. R. 2007 . Synthesizing carbon nanotubes and carbon nanofibers over supported-nickel oxide catalysts via catalytic decomposition of methane . Diam. Relat. Mater. , 16 : 1656 – 1664 .
  • Grobert , N. 2007 . Carbon nanotubes – becoming clean . Mater. Today , 10 ( 1–2 ) : 28 – 35 .
  • Philippe , R. , Caussat , B. , Falqui , A. , Kihn , Y. , Kalck , P. , Bordere , S. , Plee , D. , Gaillard , P. , Bernard , D. and Serp , P. 2009 . An original growth mode of MWCNTs on alumina supported iron catalysts . J. of Catal. , 263 : 345 – 358 .
  • Garcia , A. G. , Duarte Correa , M. J. , Perez Robles , J. F. , Romero , A. H. , Velasco-Santos , C. and Apatiga , L. M. 2010 . Carbon nanotube junctions obtained by pulsed liquid injection chemical vapour deposition . Diam. Relat. Mater. , 19 : 1052 – 1057 .
  • Unalan , H. E. and Chhowalla , M. 2005 . Investigation of single-walled carbon nanotube growth parameters using alcohol catalytic chemical vapour deposition . Nanotech. , 16 : 2153 – 2163 .
  • Gan , B. , Ahn , J. , Zhang , Q. , Yoon , S. F. , Rusli , Huang , Q. F. , Yang , H. , Yu , M. B. and Li , W. Z. 2009 . Branching carbon nanotubes deposited in HFCVD system . Diam. Relat. Mater. , 9 : 897
  • Biris , A. R. , Biris , A. S. , Lupu , D. , Trigwell , S. , Dervishi , E. , Rahman , Z. and Marginean , P. 2006 . Catalyst excitation by radio frequency for improved carbon nanotubes synthesis . Chem. Phys. Lett. , 429 : 204 – 208 .
  • Hou , P. X. , Bai , S. , Yang , Q. H. , Liu , L. and Cheng , H. M. 2002 . Multi-step purification of carbon nanotubes . Carbon , 40 : 81 – 85 .
  • Ismail , F. , Buang , N. A. and Othman , M. Z. 2012 . Role of carbon source in the synthesis of carbon nanotubes via catalytic chemical vapour deposition . Adv. Mater. Res. , 364 : 16 – 19 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.