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Related Links and Project References

 

 

1. S. Iijima, Helical microtubules of graphitic carbon, Nature (London), 1991, 354, 56-58.

2. S. Iijima, and T. Ichihashi, Single-shell carbon nanotubes of 1-nm diameter, Nature (London), 1993, 363, 603-605.

3. NewYork Times,Oct, 2012, "I.B.M. Reports Nanotube Chip Breakthrough".

4. M. M. Shulaker, G. Hills, N. Patil, H. Wei, H. Chen, P. Wong & S. Mitra, Carbon nanotube computer, Nature, Volume 501, Issue 7648, 2013.

5. S. Iijima, "Helical microtubules of graphitic carbon", Nature 354: 56–58, Bibcode:1991Natur.354...56I, doi:10.1038/354056a0

6. J. Sone, Nanotechnology in NEC, Nanotechnology in NECFundamental and Environmental Research Laboratories, NEC Corporation

7. "Pirahna USV built using nano-enhanced carbon prepreg". ReinforcedPlastics.com, December 2009.

8. W. Wang, F. Meyer, Y. Wang, G. Miller, and S. Potluri, Carbon Nanotube Enhanced Composite Materials, Zyvex Performance Materials

9. J. Pagni, "Amroy aims to become nano-leader". European Plastics News. Retrieved 2010-11-21.

10. K. Noyes. "Nanotubes Power Paper-Thin Battery". TechNewsWorld. Retrieved 2010-10-29.

11. "Beyond Batteries: Storing Power in a Sheet of Paper". RPI. August 13, 2007.

12. Carbon Nanotubes Global Trends & Forecasts To 2018, December 2013, marketsandmarkets.com

13. W. Bollmann & J. Spreadborough, "Action of Graphite as a Lubricant", Nature 186, 29-30, 2 April, 1960.

14. A. Oberlin, M. Endo and T. Koyama, "Filamentous growth of carbon through benzene decomposition", Journal of Crystal Growth, Volume 32, Issue 3, March 1976, Pages 335–349.

15. J. Abrahamson, P. G. Wiles, B. L. Rhoades, "Structure of carbon fibres found on carbon arc anodes",  presented at the 14th Biennial Conference on Carbon, June 25-29, 1979, The Pennsylvania State University.

16. H. W. Kroto, J. R. Heath, S. C. O'Brien, R. F. Curl & R. E. Smalley, "C60: Buckminsterfullerene", Nature 318, 162 - 163, 14 November, 1985.

17. D. S. Bethune, C. H. Kiang, M. S. de Vries, G. Gorman, R. Savoy, J. Vazquez & R. Beyers, "Cobalt-catalysed growth of carbon nanotubes with single-atomic-layer walls", Nature 363, 605 - 607, 17th June, 1993.

18. M. Wong, S. Gullapalli, "Nanotechnology: A Guide to Nano-Objects", CEP Magazine, May 2011

19. S. J. Tans, M. H. Devoret, H. Dai, A. Thess, R. E. Smalley, L. J. G. & C. Dekker, "Individual single-wall carbon nanotubes as quantum wires", Nature 386, 474 - 477, 3rd April, 1997.

20. M. Bockrath, D. H. Cobden, P. L. McEuen, N. G. Chopra, A. Zettl, A. Thess, R. E. Smalley, "Single-Electron Transport in Ropes of Carbon Nanotubes", Science 28 March 1997, Vol. 275 no. 5308 pp. 1922-1925

21. S. J. Tans, A. R. M. Verschueren & C. Dekker, "Room-temperaturetransistor based ona single carbon nanotube", Nature, Vol 393, 7th May 1998

22. R. Martel, T. Schmidt, H. R. Shea, T. Hertel and Ph. Avouris, "Single- and multi-wall carbon nanotube field-effect transistors", Appl. Phys. Lett. 73, 2447, 1998.

23. Tombler TW, Zhou C, Alexseyev L, Kong J, Dai H, Liu L, Jayanthi CS, Tang M, Wu SY, "Reversible electromechanical characteristics of carbon nanotubes under local-probe manipulation", Nature, Jun 15th, 2000

24. P. G. Collins, M. S. Arnold, P. Avouris, "Engineering Carbon Nanotubes and Nanotube Circuits Using Electrical Breakdown", Science, April 27th, 2001, Vol. 292 no. 5517 pp. 706-709

25. Q. Zheng and Q. Jiang, "Multiwalled Carbon Nanotubes as Gigahertz Oscillators", Phys. Rev. Lett. 88, 045503, Jan. 9th, 2002

26. "Tests Verify Carbon Nanotube Enable Ultra High Performance Transistor" (Press release). NEC, Sep. 19th, 2003.

27. L. X. Zheng, M. J. O'Connell, S. K. Doorn, X. Z. Liao, Y. H. Zhao, E. A. Akhadov, M. A. Hoffbauer, B. J. Roop, Q. X. Jia, R. C. Dye, D. E. Peterson, S. M. Huang, J. Liu & Y. T. Zhu, "Ultralong single-wall carbon nanotubes", Nature Materials 3, 673 - 676, Sep. 12th, 2004

28. "Carbon nanotubes used in computer and TV screens", New Scientist, May 21st, 2005

29. P. R. Bandaru, C. Daraio, S. Jin & A. M. Rao, "Novel electrical switching behaviour and logic in carbon nanotube Y-junctions", Nature Materials 4, 663 - 666 (2005), Published online: 14 August 2005 | doi:10.1038/nmat1450

30. "GE Global Research Develops ''Ideal'' Carbon Nanotube Diode", Business Wire, Aug. 18th, 2005

31. Z. Chen, J. Appenzeller, Y. Lin, J. Sippel-Oakley, A. G. Rinzler, J. Tang, S. J. Wind, P. M. Solomon, P. Avouris, "An Integrated Logic Circuit Assembled on a Single Carbon Nanotube", Science, March 24th, 2006: Vol. 311 no. 5768 p. 1735

32. R. G. Ellis-Behnke, Y. Liang, S. You, D. K. C. Tay, S. Zhang, K. So, and G. E. Schneider , "Nano neuro knitting: Peptide nanofiber scaffold for brain repair and axon regeneration with functional return of vision", PNAS, vol. 103 no. 13,

33. "Rice develops novel method to sort nanotubes by diameter" (Press Release), Rice University, June, 2006

34. Y. J. Lee, H. Yi, W. Kim, K. Kang, D. S. Yun, M. S. Strano, G. Ceder, A. M. Belcher, "Fabricating Genetically Engineered High-Power Lithium-Ion Batteries Using Multiple Virus Genes", Science, May 22nd 2009, Vol. 324, no. 5930, p. 1051-1055

35. A. D. Franklin, M. Luisier, S. Han, G. Tulevski, C. M. Breslin, L. Gignac, M. S. Lundstrom, and W. Haensch, "Sub-10 nm Carbon Nanotube Transistor", Nano Lett., 2012, 12 (2), pp 758–762

36. "Batteries Made From World’s Thinnest Material Could Power Tomorrow’s Electric Cars", Press Release, Rensselaer Polytechnic Institute, August 20, 2012

37. J. Paull, "Nanotechnology, No Free Lunch", Platter, 1(1): 9-17, 2010

38. J. Paul, "Nanomaterials in food and agriculture: The big issue of small matter for organic food and farming", Proceedings of the Third Scientific Conference of ISOFAR (International Society of Organic Agriculture Research), Sep. 28th - Oct. 1st, Namyangju, Korea.

39. Kolosnjaj J, Szwarc H, Moussa F., "Toxicity studies of carbon nanotubes", Adv Exp Med Biol. 2007

40. A. E. Porter, M.Hairglass, K. Muller, J. Eremy N. Skepper, P. Midgley and M. Welland, "Direct imaging of single-walled carbonnanotubes in cells", Nature,  Oct. 28th, 2007

41. Strus, M.C., "Electrical reliability and breakdown mechanisms in single-walled carbon nanotubes", Nanotechnology (IEEE-NANO), 2011 11th IEEE Conference on

42. Tatiana M., Fernando P., "Carbon Based Magnetism: An Overview of the Magnetism of Metal Free Carbon-based Compounds and Materials", March 2nd, 2006

43. N. Mingo, D. A. Stewart, D. A. Broido, and D. Srivastava, "Phonon transmission through defects in carbon nanotubes from first principles", Phys. Rev. B 77, 033418, Jan. 30th, 2008

44. G. Scrinis, "Nanotechnology and the Environment: The Nano-atomic Reconstruction of Nature", Chain Reaction, Issue 97, June 2006.

45. V. Uskoković, "Nanotechnologies: What we do not know", Technology in Society, Volume 29, Issue 1, January 2007, Pages 43–61

46. "Ethical, Legal and Societal Issssues", Nano.gov

47. J. F. Sargent Jr., "Nanotechnology and Environmental, Health, and Safety: Issues for Consideration", Jan. 20th, 2011

48. "Nanotechnology risks - the real issues", nenowerk.com, Apr 16th, 2007

49. K. Mizunoa, J. Ishiib, H. Kishidac, Y. Hayamizua, S. Yasudaa, D. N. Futabaa, M. Yumuraa and K. Hataa, "A black body absorber from vertically aligned single-walled carbon nanotubes", PNAS, March, 2009

50. L. P. Zanello , B. Zhao, H. Hu , and R. C. Haddon, "Bone Cell Proliferation on Carbon Nanotubes", Nano Letters, 2006, pp 562–567

51. "NJIT Prof Offers New Desalination Process Using Carbon Nanotubes", (Press Release), NJIT, Mar 14 2011

52. A. Naeemi and J. Meind, "Carbon Nanotube Interconnects", ISPD '07: Proceedings of the 2007 international symposium on Physical design, ACM Press, New York, NY, USA. pp. 77–84,. ISBN 978-1-59593-613-4.

53. "NJIT researchers develop inexpensive, easy process to produce solar panels", Press Release, New Jersey Institute of Technology, July 18th, 2007

54. "D. M. Guldi Prof., G. M. A. Rahman Dr., M. Prato Prof., N. Jux Dr., S. Qin Dr. and W. Ford Prof., "Single-Wall Carbon Nanotubes as Integrative Building Blocks for Solar-Energy Conversion", Angewandte Chemie International Edition, Volume 44, Issue 13, pages 2015–2018, March 18th, 2005

55. H. Dai, J. H. Hafner, A. G. Rinzler, D. T. Colbert & R. E. Smalley, "Nanotubes as nanoprobes in scanning probe microscopy", Nature 384, 147-150, Nov 14th, 1996;

56. Radushkevich L. V. and Luk'yanovich V. M. "The structure of carbon forming in thermal decomposition of carbon monoxide on an iron catalyst" (in Russian), Soviet Journal of Chemical Physics. 1952. vol. 26. 88–95 pp.

57. U. Kim, C. A. Furtado, X. Liu, G. Chen, and P. C. Eklund, "Raman and IR Spectroscopy of Chemically ProcessedSingle-Walled Carbon Nanotubes", JACS Articles, Oct. 15th, 2015

58. A. Hartschuh, H. N. Pedrosa, J. Peterson, L. Huang, P. Anger, H. Qian, A. J. Meixner, M. Steiner, L. Novotny, T. D. Krauss. "Single carbon nanotube optical spectroscopy". Chemphyschem. 2005 April; 6(4): 577–582. doi: 10.1002/cphc.2004004082.

59. Bianco, A; Prato, M; Kostarelos, K; Partidos, CD; "Biomedical applications of functionalised carbon nanotubes". Chem Commun (Camb), Feb 7th, 2005;(5):571-7.

60. Georgakilas, V.; Tagmatarchis, N.; Pantarotto, D.; Bianco, A.; Briand, J.-P.; Prato,M. "Amino acid functionalisation of water soluble carbon nanotubes", Chem. Commun. 2002, 3050–3051. 22

61. Wu, W.; Wieckowski, S.; Pastorin, G4. Hirsch, A, "Functionalization of Single-Walled Carbon Nanotubes", Angew. Chem. Int. Ed., 41: 1853–1859. doi: 10.1002/1521-3773, June 3rd, 2002, 41:11<1853::AID-ANIE1853>3.0.CO;2-N5.

62. M. Maggini, G. Scorrano, and M. Prato. "Addition of azomethine ylides to C60: synthesis, characterization, and functionalization of fullerene pyrrolidines", Journal of the American Chemical Society 1993 115 (21), 9798-97996.

63. V. Georgakilas, K. Kordatos, M. Prato, D. M. Guldi, M. Holzinger, and A. Hirsch. "Organic Functionalization of Carbon Nanotubes", Journal of the American Chemical Society, 2002 124 (5), 760-7617.

64. Y. Sun, K. Fu, Y. Lin, and W. Huang. "Functionalized Carbon Nanotubes:  Properties and Applications", Accounts of Chemical Research, 2002 35 (12), 1096-1104

65. A. Evans, J. Th. van Loon, C. E. Woodward, R. D. Gehrz, G. C. Clayton, L. A. Helton, M. T. Rushton, S. P. S. Eyres, J. Krautter, S. Starrfield and R. M. Wagner, "Solid-phase C60 in the peculiar binary XX Oph?", Monthly Notices of the Royal Astronomical Society: Letters, Volume 421, Issue 1, pages L92–L96, March 2012

66. Yuuki. "Change the World? An Amazing Material Carbon Nanotube." Change the World? An Amazing Material Carbon Nanotube. Org-Chem, n.d. Web. 27 Mar. 2014.

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