References
1. Yuan D, Xu B (2016) Heterotypic supramolecular hydrogels. J Mater Chem B 4:5638–5649
2. Seiffert S (2016) Supramolecular polymer networks and gels. In: Advances in polymer
science, vol 42. Springer, Heidelberg
3. Okay O (2015) Self-healing hydrogels formed via hydrophobic interactions. Adv Polym Sci
268:101–142
4. Amis EJ, Ning H, Seery TAP, Hogen-Esch TE, Yassini M, Hwang F (1996) Associating
polymers containing fluorocarbon hydrophobic units. In: Glass JE (ed) Hydrophilic polymers:
performance with environmental acceptability, vol 248. ACS Books, Washington, pp 278–302
5. Xie X, Hogen-Esch TE (1996) Copolymers of N,N-dimethylacrylamide and
2-(N-ethylperfluorooctanesulfonamido)ethyl acrylate in aqueous media and in bulk. Synthesis
and properties. Macromolecules 29:1734–1745
6. Zhang YX, Da AH, Hogen-Esch TE, Butler GB (1990) A fluorocarbon-containing
hydrophobically-associating polymer. J Polym Sci C Polym Lett 28:213–218
7. Zhang YX, Da AH, Butler GB (1992) A fluorine-containing hydrophobically-associating
polymer. I. Synthesis and solution properties of copolymers of acrylamide and fluorinecontaining acrylates or methacrylates. J Polym Sci A Polym Chem 30:1383–1391
8. Bae SS, Chakrabarty K, Seery TAP, Weiss RA (1999) Thermoprocessible hydrogels I:
synthesis and properties of polyacrylamides with perfluoroalkyl side chains. J Macromol Sci
Pure Appl Chem A36(7–8):931–948
9. Tian J, Seery TAP, Weiss RA (2004) Physically crosslinked alkyl acrylamide hydrogels: phase
behavior and microstructure. Macromolecules 37:9994–10000
10. Tian J, Seery TAP, Ho DL, Weiss RA (2004) Physically crosslinked alkyl acrylamide
hydrogels: a SANS analysis of the microstructure. Macromolecules 37:10001–10008
11. Mullarney MP, Seery TAP, Weiss RA (2006) Drug diffusion in hydrophobically modified N,
N-dimethylacrylamide hydrogels. Polymer 47:3845–3855
12. Hao JK, Weiss RA (2011) Viscoelastic and mechanical behavior of hydrophobically modified
hydrogels. Macromolecules 44:9390–9398
13. Hao JK, Weiss RA (2013) Mechanical behavior of hybrid hydrogels composed of a physical
network and a chemical network. Polymer 54:2174–2182
14. Hao JK, Weiss RA (2013) Mechanically tough, thermally activated shape memory hydrogels.
ACS Macro Lett 2:86–89
15. Wiener CG, Weiss RA, Vogt BD (2014) Overcoming confinement limited swelling in
hydrogel thin films using supramolecular interactions. Soft Matter 10:6705–6712
16. Wiener CG, Tyagi M, Liu Y, Weiss RA, Vogt BD (2016) Supramolecular hydrophobic
aggregates in hydrogels inhibit ice formation. J Phys Chem B 120:5543–5552
17. Hao J, Weiss RA (2016) Tuning the viscoelastic behavior of hybrid hydrogels and organogels
composed of a physical and a chemical network by the addition of an organic solvent.
Macromolecules 49:6687–6693
18. Yang Y, Wang C, Wiener CG, Hao J, Shatas S, Weiss RA, Vogt BD (2016) Tough stretchable
physically-crosslinked electrospun hydrogel fiber mats. ACS Appl Mater Interfaces
8:22774–22779
19. Wang C, Wiener CG, Cheng Z, Vogt BD, Weiss RA (2016) Modulation of the mechanical
properties of hydrophobically modified supramolecular hydrogels by surfactant-driven structural rearrangement. Macromolecules 49:9228–9238
20. Wiener CG, Wang C, Liu Y, Weiss RA, Vogt BD (2017) Nanostructure evolution during
relaxation from a large step strain in a supramolecular copolymer-based hydrogel: a sans
investigation. Macromolecules 50:1672–1680
21. Wang C, Wiener CG, Yang Y, Weiss RA, Vogt BD (2017) Structural rearrangement and
stiffening of hydrophobically modified supramolecular hydrogels during thermal annealing. J
Polym Sci B Polym Phys 55:1036–1044
Hydrophobically Associating Hydrogels with Microphase-Separated Morphologies
205
1. Yuan D, Xu B (2016) Heterotypic supramolecular hydrogels. J Mater Chem B 4:5638–5649
2. Seiffert S (2016) Supramolecular polymer networks and gels. In: Advances in polymer
science, vol 42. Springer, Heidelberg
3. Okay O (2015) Self-healing hydrogels formed via hydrophobic interactions. Adv Polym Sci
268:101–142
4. Amis EJ, Ning H, Seery TAP, Hogen-Esch TE, Yassini M, Hwang F (1996) Associating
polymers containing fluorocarbon hydrophobic units. In: Glass JE (ed) Hydrophilic polymers:
performance with environmental acceptability, vol 248. ACS Books, Washington, pp 278–302
5. Xie X, Hogen-Esch TE (1996) Copolymers of N,N-dimethylacrylamide and
2-(N-ethylperfluorooctanesulfonamido)ethyl acrylate in aqueous media and in bulk. Synthesis
and properties. Macromolecules 29:1734–1745
6. Zhang YX, Da AH, Hogen-Esch TE, Butler GB (1990) A fluorocarbon-containing
hydrophobically-associating polymer. J Polym Sci C Polym Lett 28:213–218
7. Zhang YX, Da AH, Butler GB (1992) A fluorine-containing hydrophobically-associating
polymer. I. Synthesis and solution properties of copolymers of acrylamide and fluorinecontaining acrylates or methacrylates. J Polym Sci A Polym Chem 30:1383–1391
8. Bae SS, Chakrabarty K, Seery TAP, Weiss RA (1999) Thermoprocessible hydrogels I:
synthesis and properties of polyacrylamides with perfluoroalkyl side chains. J Macromol Sci
Pure Appl Chem A36(7–8):931–948
9. Tian J, Seery TAP, Weiss RA (2004) Physically crosslinked alkyl acrylamide hydrogels: phase
behavior and microstructure. Macromolecules 37:9994–10000
10. Tian J, Seery TAP, Ho DL, Weiss RA (2004) Physically crosslinked alkyl acrylamide
hydrogels: a SANS analysis of the microstructure. Macromolecules 37:10001–10008
11. Mullarney MP, Seery TAP, Weiss RA (2006) Drug diffusion in hydrophobically modified N,
N-dimethylacrylamide hydrogels. Polymer 47:3845–3855
12. Hao JK, Weiss RA (2011) Viscoelastic and mechanical behavior of hydrophobically modified
hydrogels. Macromolecules 44:9390–9398
13. Hao JK, Weiss RA (2013) Mechanical behavior of hybrid hydrogels composed of a physical
network and a chemical network. Polymer 54:2174–2182
14. Hao JK, Weiss RA (2013) Mechanically tough, thermally activated shape memory hydrogels.
ACS Macro Lett 2:86–89
15. Wiener CG, Weiss RA, Vogt BD (2014) Overcoming confinement limited swelling in
hydrogel thin films using supramolecular interactions. Soft Matter 10:6705–6712
16. Wiener CG, Tyagi M, Liu Y, Weiss RA, Vogt BD (2016) Supramolecular hydrophobic
aggregates in hydrogels inhibit ice formation. J Phys Chem B 120:5543–5552
17. Hao J, Weiss RA (2016) Tuning the viscoelastic behavior of hybrid hydrogels and organogels
composed of a physical and a chemical network by the addition of an organic solvent.
Macromolecules 49:6687–6693
18. Yang Y, Wang C, Wiener CG, Hao J, Shatas S, Weiss RA, Vogt BD (2016) Tough stretchable
physically-crosslinked electrospun hydrogel fiber mats. ACS Appl Mater Interfaces
8:22774–22779
19. Wang C, Wiener CG, Cheng Z, Vogt BD, Weiss RA (2016) Modulation of the mechanical
properties of hydrophobically modified supramolecular hydrogels by surfactant-driven structural rearrangement. Macromolecules 49:9228–9238
20. Wiener CG, Wang C, Liu Y, Weiss RA, Vogt BD (2017) Nanostructure evolution during
relaxation from a large step strain in a supramolecular copolymer-based hydrogel: a sans
investigation. Macromolecules 50:1672–1680
21. Wang C, Wiener CG, Yang Y, Weiss RA, Vogt BD (2017) Structural rearrangement and
stiffening of hydrophobically modified supramolecular hydrogels during thermal annealing. J
Polym Sci B Polym Phys 55:1036–1044
Hydrophobically Associating Hydrogels with Microphase-Separated Morphologies
205
