10. Dillon AC, Jones KM, Bekkedahl TA, Kiang CH, Heben MJ (1997) Storage of hydrogen in
single-walled carbon nanotubes. Nature 386:377–379
11. Britto PJ, Santhanam KSV, Ajayan PM (1996) Carbon nanotube electrode for oxidation of
dopamine. Bioelectrochem Bioenerg 41:121–125
12. Che GL, Lakshmi BB, Fisher ER, Martin CR (1998) Carbon nanotubule membranes for
electrochemical energy storage and production. Nature 393:346–349
13. Lu W, Baek JB, Dai L (eds) (2015) Carbon nanomaterials for advanced energy systems:
advances in materials synthesis and device applications. Wiley, Hoboken, NJ
14. Herrero-Latorre C, Álvarez-Méndez J, Barciela-García J, García-Martín S, Peña-Crecente RM
(2015) Characterization of carbon nanotubes and analytical methods for their determination in
environmental and biological samples: a review. Anal Chim Acta 853:77–94
15. Braun EI, Huang A, Tusa CA, Yukica MA, Pantano P (2016) Use of Raman spectroscopy to
identify carbon nanotube contamination at an analytical balance workstation. J Occup Environ
Hyg 13:915–923
16. Rogers-Nieman GM, Dinu CZ (2014) Therapeutic applications of carbon nanotubes:
opportunities and challenges. Wiley Interdiscip Rev Nanomed Nanobiotechnol 6:327–337
17. Herrera-Herrera AV, Gonzalez-Curbelo MA, Hernández-Borges J (2012) Carbon nanotubes
applications in separation science: a review. Anal Chim Acta 734:1–30
18. Socas-Rodríguez B, Herrera-Herrera AV, Asensio-Ramos M, Hernández-Borges J (2014)
Recent applications of carbon nanotube sorbents in analytical chemistry. J Chromatogr A
1357:110–146
19. Srivastava A, Srivastava ON, Talapatra S, Vajtai R, Ajayan PM (2004) Carbon nanotube
filters. Nat Mat 3:610–614
20. Ebbesen TW, Lezec HJ, Hiura H, Bennett JW, Ghaemi HF, Thio T (1996) Electrical
conductivity of individual carbon nanotubes. Nature 382:54–56
21. Bockrath M, Cobden DH, McEuen PL, Chopra NG, Zettle A, Thess A, Smalley RE (1997)
Single-electron transport in ropes of carbon nanotubes. Science 275:1922–1925
22. Krauss TD, Wise FW, Tanner DB (1996) Observation of coupled vibrational modes of a
semiconductor nanocrystal. Phys Rev Lett 76:1376–1379
23. Bischof T, Lermann G, Schreder B, Materny A, Kiefer W, Ivanda M (1997)
Intensity-dependent micro-Raman and photoluminescence investigations of CdS x Se 1−x
nanocrystallites. J Opt Soc Am B 14:3334–3338
24. Schreder B, Materny A, Kiefer W, Kümmell T, Bacher G, Forchel A, Landwehr G (2000)
Raman investigation of Cd x Zn 1−x Se/ZnSe quantum wires: Strain relaxation and excitation
profile. J Appl Phys 88:764–771
25. Jorio A, Dresselhaus G, Dresselhaus MS, Souza M, Dantas MSS, Pimenta MA, Rao AM,
Saito R, Liu C, Cheng HM (2000) Polarized Raman study of single-wall semiconducting
carbon nanotubes. Phys Rev Lett 85:2617–2620
26. Kasuya A, Sasaki Y, Saito Y, Tohji K, Nishina Y (1997) Evidence for size-dependent discrete
dispersions in single-wall nanotubes. Phys Rev Lett 78:4434–4441
27. Dresselhaus MS, Jorio A, Hofmann M, Dresselhaus G, Saito R (2010) Perspectives on carbon
nanotubes and graphene Raman spectroscopy. Nano Lett 10:751–758
28. Jorio A, Kauppinen E, Hassanien A (2008) Carbon-nanotube metrology. In: Jorio A,
Dresselhaus G, Dresselhaus MS (eds) Carbon nanotubes. Topics applied in physics, vol 111.
Springer, Berlin, pp 63–100
29. Thomsen C, Reich S (2007) Raman scattering in carbon nanotubes. In: Cardona M, Merlin R
(eds) Light scattering in solid IX. Topics applied in physics, vol 108. Springer, Berlin,
pp 115–232
30. Saito R, Grüneis A, Samsonidze GG, Brar VW, Dresselhaus G, Dresselhaus MS, Jario A,
Canҫado LG, Fantini C, Pimenta MA, Filho AGS (2003) Double resonance Raman
spectroscopy of single-wall carbon nanotubes. New J Phys 5:157
31. Saito R, Dresselhaus G, Dresselhaus MS (1998) Physical properties of carbon nanotube.
Imperial College Press, London
136
A. K. Ojha and H. M. Heise
single-walled carbon nanotubes. Nature 386:377–379
11. Britto PJ, Santhanam KSV, Ajayan PM (1996) Carbon nanotube electrode for oxidation of
dopamine. Bioelectrochem Bioenerg 41:121–125
12. Che GL, Lakshmi BB, Fisher ER, Martin CR (1998) Carbon nanotubule membranes for
electrochemical energy storage and production. Nature 393:346–349
13. Lu W, Baek JB, Dai L (eds) (2015) Carbon nanomaterials for advanced energy systems:
advances in materials synthesis and device applications. Wiley, Hoboken, NJ
14. Herrero-Latorre C, Álvarez-Méndez J, Barciela-García J, García-Martín S, Peña-Crecente RM
(2015) Characterization of carbon nanotubes and analytical methods for their determination in
environmental and biological samples: a review. Anal Chim Acta 853:77–94
15. Braun EI, Huang A, Tusa CA, Yukica MA, Pantano P (2016) Use of Raman spectroscopy to
identify carbon nanotube contamination at an analytical balance workstation. J Occup Environ
Hyg 13:915–923
16. Rogers-Nieman GM, Dinu CZ (2014) Therapeutic applications of carbon nanotubes:
opportunities and challenges. Wiley Interdiscip Rev Nanomed Nanobiotechnol 6:327–337
17. Herrera-Herrera AV, Gonzalez-Curbelo MA, Hernández-Borges J (2012) Carbon nanotubes
applications in separation science: a review. Anal Chim Acta 734:1–30
18. Socas-Rodríguez B, Herrera-Herrera AV, Asensio-Ramos M, Hernández-Borges J (2014)
Recent applications of carbon nanotube sorbents in analytical chemistry. J Chromatogr A
1357:110–146
19. Srivastava A, Srivastava ON, Talapatra S, Vajtai R, Ajayan PM (2004) Carbon nanotube
filters. Nat Mat 3:610–614
20. Ebbesen TW, Lezec HJ, Hiura H, Bennett JW, Ghaemi HF, Thio T (1996) Electrical
conductivity of individual carbon nanotubes. Nature 382:54–56
21. Bockrath M, Cobden DH, McEuen PL, Chopra NG, Zettle A, Thess A, Smalley RE (1997)
Single-electron transport in ropes of carbon nanotubes. Science 275:1922–1925
22. Krauss TD, Wise FW, Tanner DB (1996) Observation of coupled vibrational modes of a
semiconductor nanocrystal. Phys Rev Lett 76:1376–1379
23. Bischof T, Lermann G, Schreder B, Materny A, Kiefer W, Ivanda M (1997)
Intensity-dependent micro-Raman and photoluminescence investigations of CdS x Se 1−x
nanocrystallites. J Opt Soc Am B 14:3334–3338
24. Schreder B, Materny A, Kiefer W, Kümmell T, Bacher G, Forchel A, Landwehr G (2000)
Raman investigation of Cd x Zn 1−x Se/ZnSe quantum wires: Strain relaxation and excitation
profile. J Appl Phys 88:764–771
25. Jorio A, Dresselhaus G, Dresselhaus MS, Souza M, Dantas MSS, Pimenta MA, Rao AM,
Saito R, Liu C, Cheng HM (2000) Polarized Raman study of single-wall semiconducting
carbon nanotubes. Phys Rev Lett 85:2617–2620
26. Kasuya A, Sasaki Y, Saito Y, Tohji K, Nishina Y (1997) Evidence for size-dependent discrete
dispersions in single-wall nanotubes. Phys Rev Lett 78:4434–4441
27. Dresselhaus MS, Jorio A, Hofmann M, Dresselhaus G, Saito R (2010) Perspectives on carbon
nanotubes and graphene Raman spectroscopy. Nano Lett 10:751–758
28. Jorio A, Kauppinen E, Hassanien A (2008) Carbon-nanotube metrology. In: Jorio A,
Dresselhaus G, Dresselhaus MS (eds) Carbon nanotubes. Topics applied in physics, vol 111.
Springer, Berlin, pp 63–100
29. Thomsen C, Reich S (2007) Raman scattering in carbon nanotubes. In: Cardona M, Merlin R
(eds) Light scattering in solid IX. Topics applied in physics, vol 108. Springer, Berlin,
pp 115–232
30. Saito R, Grüneis A, Samsonidze GG, Brar VW, Dresselhaus G, Dresselhaus MS, Jario A,
Canҫado LG, Fantini C, Pimenta MA, Filho AGS (2003) Double resonance Raman
spectroscopy of single-wall carbon nanotubes. New J Phys 5:157
31. Saito R, Dresselhaus G, Dresselhaus MS (1998) Physical properties of carbon nanotube.
Imperial College Press, London
136
A. K. Ojha and H. M. Heise
