1 3
Topics in Current Chemistry (2020) 378:15
69. Kooi SE, Schlecht U, Burghard M, Kern K (2002) Electrochemical modification of single carbon
nanotubes. Angew Chem Int Ed Engl 41(8):1353–1355
70. Balasubramanian K, Sordan R, Burghard M, Kern K (2004) A selective electrochemical approach
to carbon nanotube field-effect transistors. Nano Lett 4(5):827–830. https ://doi.org/10.1021/nl049
806d
71. Delgado JL, de la Cruz P, Langa F, Urbina A, Casado J, Navarrete JTL (2004) Microwave-assisted
sidewall functionalization of single-wall carbon nanotubes by Diels–Alder cycloaddition. Chem
Commun 15:1734–1735
72. Araújo RF, Proença MF, Silva CJ, Castro TG, Melle-Franco M, Paiva MC, Villar-Rodil S, Tascón
JMD (2016) Grafting of adipic anhydride to carbon nanotubes through a Diels–Alder cycloaddition/oxidation cascade reaction. Carbon 98:421–431. https ://doi.org/10.1016/j.carbo n.2015.11.004
73. Georgakilas V, Kordatos K, Prato M, Guldi DM, Holzinger M, Hirsch A (2002) Organic functionalization of carbon nanotubes. J Am Chem Soc 124(5):760–761. https ://doi.org/10.1021/ja016
954m
74. Georgakilas V, Tagmatarchis N, Pantarotto D, Bianco A, Briand JP, Prato M (2002) Amino acid
functionalisation of water soluble carbon nanotubes. Chem Commun 24:3050–3051. https ://doi.
org/10.1039/b2098 43a
75. Lu X, Tian F, Xu X, Wang NQ, Zhang Q (2003) Theoretical exploration of the 1,3-dipolar cycloadditions onto the sidewalls of (n, n) armchair single-wall carbon nanotubes. J Am Chem Soc
125(34):10459–10464. https ://doi.org/10.1021/ja034 662a
76. Yao ZL, Braidy N, Botton GA, Adronov A (2003) Polymerization from the surface of singlewalled carbon nanotubes—preparation and characterization of nanocomposites. J Am Chem Soc
125(51):16015–16024. https ://doi.org/10.1021/ja037 564y
77. Calcio Gaudino E, Tagliapietra S, Martina K, Barge A, Lolli M, Terreno E, Lembo D, Cravotto G
(2014) A novel SWCNT platform bearing DOTA and β-cyclodextrin units. “One shot” multidecoration under microwave irradiation. Org Biomol Chem 12(26):4708–4715. https ://doi.org/10.1039/
c4ob0 0611a
78. Tobias G, Mendoza E, Ballesteros B (2012) Functionalization of Carbon Nanotubes. In: Bhushan
B (ed) Encyclopedia of nanotechnology. Springer Netherlands, Dordrecht, pp 911–919. https ://doi.
org/10.1007/978-90-481-9751-4_48
79. Zhang ZY, Xu XC (2015) Nondestructive covalent functionalization of carbon nanotubes by
selective oxidation of the original defects with K 2 FeO 4 . Appl Surf Sci 346:520–527. https ://doi.
org/10.1016/j.apsus c.2015.04.026
80. Gonzalez-Guerrero AB, Mendoza E, Pellicer E, Alsina F, Fernandez-Sanchez C, Lechuga LM
(2008) Discriminating the carboxylic groups from the total acidic sites in oxidized multi-wall carbon nanotubes by means of acid-base titration. Chem Phys Lett 462(4–6):256–259. https ://doi.
org/10.1016/j.cplet t.2008.07.071
81. Riggs JE, Guo ZX, Carroll DL, Sun YP (2000) Strong luminescence of solubilized carbon nanotubes. J Am Chem Soc 122(24):5879–5880
82. Sun YP, Huang WJ, Lin Y, Fu KF, Kitaygorodskiy A, Riddle LA, Yu YJ, Carroll DL (2001) Soluble dendron-functionalized carbon nanotubes: preparation, characterization, and properties. Chem
Mater 13(9):2864–2869
83. Chen J, Hamon MA, Hu H, Chen YS, Rao AM, Eklund PC, Haddon RC (1998) Solution properties
of single-walled carbon nanotubes. Science 282(5386):95–98
84. Chen J, Rao AM, Lyuksyutov S, Itkis ME, Hamon MA, Hu H, Cohn RW, Eklund PC, Colbert DT,
Smalley RE, Haddon RC (2001) Dissolution of full-length single-walled carbon nanotubes. J Phys
Chem B 105(13):2525–2528
85. Liu J, Rinzler AG, Dai H, Hafner JH, Bradley RK, Boul PJ, Lu A, Iverson T, Shelimov K, Huffman
CB (1998) Fullerene pipes. Science 280(5367):1253–1256
86. Bourlinos AB, Georgakilas V, Tzitzios V, Boukos N, Herrera R, Giannelis ER (2006) Functionalized carbon nanotubes: synthesis of meltable and amphiphilic derivatives. Small 2(10):1188–1191
87. Samori C, Sainz R, Menard-Moyon C, Toma FM, Venturelli E, Singh P, Ballestri M, Prato M,
Bianco A (2010) Potentiometric titration as a straightforward method to assess the number of functional groups on shortened carbon nanotubes. Carbon 48(9):2447–2454
88. Calle D, Negri V, Munuera C, Mateos L, Touriño IL, Viñegla PR, Ramírez MO, García-Hernández M, Cerdán S, Ballesteros P (2018) Magnetic anisotropy of functionalized multi-walled carbon
nanotube suspensions. Carbon 131:229–237. https ://doi.org/10.1016/j.carbo n.2018.01.104
209
Reprinted from the journal
Topics in Current Chemistry (2020) 378:15
69. Kooi SE, Schlecht U, Burghard M, Kern K (2002) Electrochemical modification of single carbon
nanotubes. Angew Chem Int Ed Engl 41(8):1353–1355
70. Balasubramanian K, Sordan R, Burghard M, Kern K (2004) A selective electrochemical approach
to carbon nanotube field-effect transistors. Nano Lett 4(5):827–830. https ://doi.org/10.1021/nl049
806d
71. Delgado JL, de la Cruz P, Langa F, Urbina A, Casado J, Navarrete JTL (2004) Microwave-assisted
sidewall functionalization of single-wall carbon nanotubes by Diels–Alder cycloaddition. Chem
Commun 15:1734–1735
72. Araújo RF, Proença MF, Silva CJ, Castro TG, Melle-Franco M, Paiva MC, Villar-Rodil S, Tascón
JMD (2016) Grafting of adipic anhydride to carbon nanotubes through a Diels–Alder cycloaddition/oxidation cascade reaction. Carbon 98:421–431. https ://doi.org/10.1016/j.carbo n.2015.11.004
73. Georgakilas V, Kordatos K, Prato M, Guldi DM, Holzinger M, Hirsch A (2002) Organic functionalization of carbon nanotubes. J Am Chem Soc 124(5):760–761. https ://doi.org/10.1021/ja016
954m
74. Georgakilas V, Tagmatarchis N, Pantarotto D, Bianco A, Briand JP, Prato M (2002) Amino acid
functionalisation of water soluble carbon nanotubes. Chem Commun 24:3050–3051. https ://doi.
org/10.1039/b2098 43a
75. Lu X, Tian F, Xu X, Wang NQ, Zhang Q (2003) Theoretical exploration of the 1,3-dipolar cycloadditions onto the sidewalls of (n, n) armchair single-wall carbon nanotubes. J Am Chem Soc
125(34):10459–10464. https ://doi.org/10.1021/ja034 662a
76. Yao ZL, Braidy N, Botton GA, Adronov A (2003) Polymerization from the surface of singlewalled carbon nanotubes—preparation and characterization of nanocomposites. J Am Chem Soc
125(51):16015–16024. https ://doi.org/10.1021/ja037 564y
77. Calcio Gaudino E, Tagliapietra S, Martina K, Barge A, Lolli M, Terreno E, Lembo D, Cravotto G
(2014) A novel SWCNT platform bearing DOTA and β-cyclodextrin units. “One shot” multidecoration under microwave irradiation. Org Biomol Chem 12(26):4708–4715. https ://doi.org/10.1039/
c4ob0 0611a
78. Tobias G, Mendoza E, Ballesteros B (2012) Functionalization of Carbon Nanotubes. In: Bhushan
B (ed) Encyclopedia of nanotechnology. Springer Netherlands, Dordrecht, pp 911–919. https ://doi.
org/10.1007/978-90-481-9751-4_48
79. Zhang ZY, Xu XC (2015) Nondestructive covalent functionalization of carbon nanotubes by
selective oxidation of the original defects with K 2 FeO 4 . Appl Surf Sci 346:520–527. https ://doi.
org/10.1016/j.apsus c.2015.04.026
80. Gonzalez-Guerrero AB, Mendoza E, Pellicer E, Alsina F, Fernandez-Sanchez C, Lechuga LM
(2008) Discriminating the carboxylic groups from the total acidic sites in oxidized multi-wall carbon nanotubes by means of acid-base titration. Chem Phys Lett 462(4–6):256–259. https ://doi.
org/10.1016/j.cplet t.2008.07.071
81. Riggs JE, Guo ZX, Carroll DL, Sun YP (2000) Strong luminescence of solubilized carbon nanotubes. J Am Chem Soc 122(24):5879–5880
82. Sun YP, Huang WJ, Lin Y, Fu KF, Kitaygorodskiy A, Riddle LA, Yu YJ, Carroll DL (2001) Soluble dendron-functionalized carbon nanotubes: preparation, characterization, and properties. Chem
Mater 13(9):2864–2869
83. Chen J, Hamon MA, Hu H, Chen YS, Rao AM, Eklund PC, Haddon RC (1998) Solution properties
of single-walled carbon nanotubes. Science 282(5386):95–98
84. Chen J, Rao AM, Lyuksyutov S, Itkis ME, Hamon MA, Hu H, Cohn RW, Eklund PC, Colbert DT,
Smalley RE, Haddon RC (2001) Dissolution of full-length single-walled carbon nanotubes. J Phys
Chem B 105(13):2525–2528
85. Liu J, Rinzler AG, Dai H, Hafner JH, Bradley RK, Boul PJ, Lu A, Iverson T, Shelimov K, Huffman
CB (1998) Fullerene pipes. Science 280(5367):1253–1256
86. Bourlinos AB, Georgakilas V, Tzitzios V, Boukos N, Herrera R, Giannelis ER (2006) Functionalized carbon nanotubes: synthesis of meltable and amphiphilic derivatives. Small 2(10):1188–1191
87. Samori C, Sainz R, Menard-Moyon C, Toma FM, Venturelli E, Singh P, Ballestri M, Prato M,
Bianco A (2010) Potentiometric titration as a straightforward method to assess the number of functional groups on shortened carbon nanotubes. Carbon 48(9):2447–2454
88. Calle D, Negri V, Munuera C, Mateos L, Touriño IL, Viñegla PR, Ramírez MO, García-Hernández M, Cerdán S, Ballesteros P (2018) Magnetic anisotropy of functionalized multi-walled carbon
nanotube suspensions. Carbon 131:229–237. https ://doi.org/10.1016/j.carbo n.2018.01.104
209
Reprinted from the journal
