References
147
85. Mueller JO, Guimard NK, Oehlenschlaeger KK, Schmidt FG, Barner-Kowollik C (2014)
Sunlight-induced crosslinking of 1,2-Polybutadienes: access to fluorescent polymer networks.
Polym Chem 5:1447–1456
86. Hufendiek A, Carlmark A, Meier MAR, Barner-Kowollik C (2016) Fluorescent covalently
cross-linked cellulose networks via light-induced ligation. ACS Macro Lett 5:139–143
87. Wang C, Zieger MM, Schenzel A, Wegener M, Willenbacher J, Barner-Kowollik C, Bowman
CN (2017) Photoinduced Tetrazole-based functionalization of off-stoichiometric clickable
microparticles. Adv Funct Mater 27:1605317
88. Estupiñán D, Barner-Kowollik C, Barner L (2018) Counting the clicks in fluorescent polymer
networks. Angew Chemie Int Ed 57:5925–5929
89. Ouchi M, Badi N, Lutz J-F, Sawamoto M (2011) Single-chain technology using discrete
synthetic macromolecules. Nat Chem 3:917–924
90. Kröger APP, Paulusse JMJ (2018) Single-chain polymer nanoparticles in controlled drug
delivery and targeted imaging. J Control Release 286:326–347
91. Willenbacher J, Wuest KNR, Mueller JO, Kaupp M, Wagenknecht H-A, Barner-Kowollik
C (2014) Photochemical design of functional fluorescent single-chain nanoparticles. ACS
Macro Lett 3:574–579
92. Offenloch JT, Willenbacher J, Tzvetkova P, Heiler C, Mutlu H, Barner-Kowollik C (2017)
Degradable fluorescent single-chain nanoparticles based on metathesis polymers. Chem
Commun 53:775–778
93. Heiler C, Offenloch JT, Blasco E, Barner-Kowollik C (2017) Photochemically induced folding
of single chain polymer nanoparticles in water. ACS Macro Lett 6:56–61
94. Heiler C, Bastian S, Lederhose P, Blinco JP, Blasco E, Barner-Kowollik C (2018) Folding
polymer chains with visible light. Chem Commun 54:3476–3479
95. Nitsche T, Steinkoenig J, De Bruycker K, Bloesser FR, Blanksby SJ, Blinco JP, BarnerKowollik C (2019) Mapping the compaction of discrete polymer chains by size exclusion
chromatography coupled to high-resolution mass spectrometry. Macromolecules 52:2597–
2606
96. Langa F, Oswald F (2006) Pyrazolino [60]fullerenes: synthesis and properties. Comptes
Rendus Chim 9:1058–1074
97. Muthu S, Maruthamuthu P, Ragunathan R, Vasudeva Rao PR, Matthews CK (1994) Reaction
of Buckminsterfullerene with 1,3-Diphenylnitrilimine: synthesis of Pyrazoline derivatives of
fullerene. Tetrahedron Lett 35:1763–1766
98. Matsubara Y, Tada H, Nagase S, Yoshida Z (1995) Intramolecular charge transfer interaction
in 1,3-Diphenyl-2-pyrazoline ring-fused C 60 . J Org Chem 60:5372–5373
99. Matsubara Y, Muraoka H, Tada H, Yoshida Z (1996) Functionalization of C 60 with 1,3Nitrilimine dipole: synthesis of 2-Pyrazoline ring-fused C 60 derivatives. Chem Lett 25:373–
374
100. de la Cruz P, Diaz-Ortiz A, Garcia JJ, Gomez-Escalonilla MJ, de la Hoz A, Langa F (1999)
Synthesis of new C 60 -donor dyads by reaction of Pyrazolylhydrazones with [60]fullerene
under microwave irradiation. Tetrahedron Lett 40:1587–1590
101. Reinov MV, Yurovskaya MA, Davydov DV, Streletskii AV (2004) Heterocyclic derivatives
of fullerene C 60 1. Synthesis of new Fulleropyrazolines by the 1,3-dipolar cycloaddition of
Nitrile Imines. Chem Heterocycl Compd 40:188–193
102. Sugawara Y, Jasinski N, Kaupp M, Welle A, Zydziak N, Blasco E, Barner-Kowollik C (2015)
Light-driven Nitrile Imine-mediated Tetrazole–ene cycloaddition as a versatile platform for
fullerene conjugation. Chem Commun 51:13000–13003
103. Delgado JL, de la Cruz P, Lopez-Arza V, Langa F (2004) A ready access to unprecedented
N-Anilinopyrazolino[60]fullerenes. Tetrahedron Lett 45:1651–1654
104. Delgado JL, Cardinali F, Espíldora E, Torres MR, Langa F, Martín N (2008) Oxidation of
3-Alkyl-Substituted 2-Pyrazolino[60]fullerenes: a new formyl-containing building block for
fullerene chemistry. Org Lett 10:3705–3708
105. Oswald F, El-Khouly ME, Araki Y, Ito O, Langa F (2007) Photophysical properties of the
newly synthesized triad based on [70]fullerene studies with laser flash photolysis. J Phys
Chem B 111:4335–4341
147
85. Mueller JO, Guimard NK, Oehlenschlaeger KK, Schmidt FG, Barner-Kowollik C (2014)
Sunlight-induced crosslinking of 1,2-Polybutadienes: access to fluorescent polymer networks.
Polym Chem 5:1447–1456
86. Hufendiek A, Carlmark A, Meier MAR, Barner-Kowollik C (2016) Fluorescent covalently
cross-linked cellulose networks via light-induced ligation. ACS Macro Lett 5:139–143
87. Wang C, Zieger MM, Schenzel A, Wegener M, Willenbacher J, Barner-Kowollik C, Bowman
CN (2017) Photoinduced Tetrazole-based functionalization of off-stoichiometric clickable
microparticles. Adv Funct Mater 27:1605317
88. Estupiñán D, Barner-Kowollik C, Barner L (2018) Counting the clicks in fluorescent polymer
networks. Angew Chemie Int Ed 57:5925–5929
89. Ouchi M, Badi N, Lutz J-F, Sawamoto M (2011) Single-chain technology using discrete
synthetic macromolecules. Nat Chem 3:917–924
90. Kröger APP, Paulusse JMJ (2018) Single-chain polymer nanoparticles in controlled drug
delivery and targeted imaging. J Control Release 286:326–347
91. Willenbacher J, Wuest KNR, Mueller JO, Kaupp M, Wagenknecht H-A, Barner-Kowollik
C (2014) Photochemical design of functional fluorescent single-chain nanoparticles. ACS
Macro Lett 3:574–579
92. Offenloch JT, Willenbacher J, Tzvetkova P, Heiler C, Mutlu H, Barner-Kowollik C (2017)
Degradable fluorescent single-chain nanoparticles based on metathesis polymers. Chem
Commun 53:775–778
93. Heiler C, Offenloch JT, Blasco E, Barner-Kowollik C (2017) Photochemically induced folding
of single chain polymer nanoparticles in water. ACS Macro Lett 6:56–61
94. Heiler C, Bastian S, Lederhose P, Blinco JP, Blasco E, Barner-Kowollik C (2018) Folding
polymer chains with visible light. Chem Commun 54:3476–3479
95. Nitsche T, Steinkoenig J, De Bruycker K, Bloesser FR, Blanksby SJ, Blinco JP, BarnerKowollik C (2019) Mapping the compaction of discrete polymer chains by size exclusion
chromatography coupled to high-resolution mass spectrometry. Macromolecules 52:2597–
2606
96. Langa F, Oswald F (2006) Pyrazolino [60]fullerenes: synthesis and properties. Comptes
Rendus Chim 9:1058–1074
97. Muthu S, Maruthamuthu P, Ragunathan R, Vasudeva Rao PR, Matthews CK (1994) Reaction
of Buckminsterfullerene with 1,3-Diphenylnitrilimine: synthesis of Pyrazoline derivatives of
fullerene. Tetrahedron Lett 35:1763–1766
98. Matsubara Y, Tada H, Nagase S, Yoshida Z (1995) Intramolecular charge transfer interaction
in 1,3-Diphenyl-2-pyrazoline ring-fused C 60 . J Org Chem 60:5372–5373
99. Matsubara Y, Muraoka H, Tada H, Yoshida Z (1996) Functionalization of C 60 with 1,3Nitrilimine dipole: synthesis of 2-Pyrazoline ring-fused C 60 derivatives. Chem Lett 25:373–
374
100. de la Cruz P, Diaz-Ortiz A, Garcia JJ, Gomez-Escalonilla MJ, de la Hoz A, Langa F (1999)
Synthesis of new C 60 -donor dyads by reaction of Pyrazolylhydrazones with [60]fullerene
under microwave irradiation. Tetrahedron Lett 40:1587–1590
101. Reinov MV, Yurovskaya MA, Davydov DV, Streletskii AV (2004) Heterocyclic derivatives
of fullerene C 60 1. Synthesis of new Fulleropyrazolines by the 1,3-dipolar cycloaddition of
Nitrile Imines. Chem Heterocycl Compd 40:188–193
102. Sugawara Y, Jasinski N, Kaupp M, Welle A, Zydziak N, Blasco E, Barner-Kowollik C (2015)
Light-driven Nitrile Imine-mediated Tetrazole–ene cycloaddition as a versatile platform for
fullerene conjugation. Chem Commun 51:13000–13003
103. Delgado JL, de la Cruz P, Lopez-Arza V, Langa F (2004) A ready access to unprecedented
N-Anilinopyrazolino[60]fullerenes. Tetrahedron Lett 45:1651–1654
104. Delgado JL, Cardinali F, Espíldora E, Torres MR, Langa F, Martín N (2008) Oxidation of
3-Alkyl-Substituted 2-Pyrazolino[60]fullerenes: a new formyl-containing building block for
fullerene chemistry. Org Lett 10:3705–3708
105. Oswald F, El-Khouly ME, Araki Y, Ito O, Langa F (2007) Photophysical properties of the
newly synthesized triad based on [70]fullerene studies with laser flash photolysis. J Phys
Chem B 111:4335–4341
