covalent bonds from the stress transfer occurring when a chemical bond breaks, in
qualitative agreement with the model recently proposed by Tito et al. [12].
Acknowledgments Jingwen Zhao has benefitted from a scholarship from the Chinese Scholarship
Council. This project has received funding from the European Research Council (ERC) under the
European Union’s Horizon 2020 research and innovation program under grant agreement AdG No
695351.
References
1. Calvert P (2009) Adv Mater 21:743–756
2. Creton C (2017) Macromolecules 50:8297–8316
3. Sun TL, Kurokawa T, Kuroda S, Ihsan AB, Akasaki T, Sato K, Haque MA, Nakajima T, Gong
JP (2013) Nat Mater 12:932–937
4. Gong JP (2010) Soft Matter 6:2583–2590
5. Sun J-Y, Zhao X, Illeperuma WRK, Chaudhuri O, Oh KH, Mooney DJ, Vlassak JJ, Suo Z
(2012) Nature 489:133–136
6. Zhao X (2014) Soft Matter 10:672–687
7. Okumura Y, Ito K (2001) Adv Mater 13:485–487
8. Haraguchi K, Takehisa T (2002) Adv Mater 14:1120–1124
9. Gong JP, Katsuyama Y, Kurokawa T, Osada Y (2003) Adv Mater 15:1155–1158
10. Webber RE, Creton C, Brown HR, Gong JP (2007) Macromolecules 40:2919–2927
11. Lin WC, Fan W, Marcellan A, Hourdet D, Creton C (2010) Macromolecules 43:2554–2563
12. Tito NB, Creton C, Storm C, Ellenbroek WG (2019) Soft Matter 15:2190–2203
13. Tuncaboylu DC, Sari M, Oppermann W, Okay O (2011) Macromolecules 44:4997–5005
14. Zhang J, Wang N, Liu W, Zhao X, Lu W (2013) Soft Matter 9:6331–6337
15. Tang L, Liu W, Liu G (2010) Adv Mater 22:2652–2656
16. Haque MA, Kurokawa T, Kamita G, Gong JP (2011) Macromolecules 44:8916–8924
17. Henderson KJ, Zhou TC, Otim KJ, Shull KR (2010) Macromolecules 43:6193–6201
18. Mayumi K, Marcellan A, Ducouret G, Creton C, Narita T (2013) ACS Macro Lett 2:1065–1068
19. Guo J, Long R, Mayumi K, Hui C-Y (2016) Macromolecules 49:3497–3507
20. Mayumi K, Guo J, Narita T, Hui CY, Creton C (2016) Extreme Mech Lett 6:52–59
21. Guo J, Liu ML, Zehnder AT, Zhao J, Narita T, Creton C, Hui CY (2018) J Mech Phys Solids
120:79–95
22. Narita T, Mayumi K, Ducouret G, Hebraud P (2013) Macromolecules 46:4174–4183
23. Long R, Mayumi K, Creton C, Narita T, Hui C-Y (2014) Macromolecules 47:7243–7250
24. Long R, Mayumi K, Creton C, Narita T, Hui C-Y (2015) J Rheol (1978-present) 59:643–665
25. Zhao J, Mayumi K, Creton C, Narita T (2017) J Rheol 61:1371–1383
26. Guo J, Liu ML, Zehnder AT, Zhao J, Narita T, Creton C, Hui CY (2018) J Rheol 62:991
27. Holten-Andersen N, Harrington MJ, Birkedal H, Lee BP, Messersmith PB, Lee KYC, Waite JH
(2011) Proc Natl Acad Sci 108:2651–2655
28. Fullenkamp DE, He L, Barrett DG, Burghardt WR, Messersmith PB (2013) Macromolecules
46:1167–1174
29. Menyo MS, Hawker CJ, Waite JH (2015) ACS Macro Lett 4:1200–1204
30. Xu Z, Li J, Gao G, Wang Z, Cong Y, Chen J, Yin J, Nie L, Fu J (2018) J Polym Sci B
56:865–876
31. Lin P, Ma S, Wang X, Zhou F (2015) Adv Mater 27:2054–2059
32. Zhang H, Sun L, Yang B, Zhang Y, Zhu S (2016) RSC Adv 6:63848–63854
33. Yi X, He J, Wang X, Zhang Y, Tan G, Zhou Z, Chen J, Chen D, Wang R, Tian W, Yu P,
Zhou L, Ning C (2018) ACS Appl Mater Interfaces 10:6190–6198
Dual Crosslink Hydrogels with Metal-Ligand Coordination Bonds: Tunable Dynamics. . .
19
qualitative agreement with the model recently proposed by Tito et al. [12].
Acknowledgments Jingwen Zhao has benefitted from a scholarship from the Chinese Scholarship
Council. This project has received funding from the European Research Council (ERC) under the
European Union’s Horizon 2020 research and innovation program under grant agreement AdG No
695351.
References
1. Calvert P (2009) Adv Mater 21:743–756
2. Creton C (2017) Macromolecules 50:8297–8316
3. Sun TL, Kurokawa T, Kuroda S, Ihsan AB, Akasaki T, Sato K, Haque MA, Nakajima T, Gong
JP (2013) Nat Mater 12:932–937
4. Gong JP (2010) Soft Matter 6:2583–2590
5. Sun J-Y, Zhao X, Illeperuma WRK, Chaudhuri O, Oh KH, Mooney DJ, Vlassak JJ, Suo Z
(2012) Nature 489:133–136
6. Zhao X (2014) Soft Matter 10:672–687
7. Okumura Y, Ito K (2001) Adv Mater 13:485–487
8. Haraguchi K, Takehisa T (2002) Adv Mater 14:1120–1124
9. Gong JP, Katsuyama Y, Kurokawa T, Osada Y (2003) Adv Mater 15:1155–1158
10. Webber RE, Creton C, Brown HR, Gong JP (2007) Macromolecules 40:2919–2927
11. Lin WC, Fan W, Marcellan A, Hourdet D, Creton C (2010) Macromolecules 43:2554–2563
12. Tito NB, Creton C, Storm C, Ellenbroek WG (2019) Soft Matter 15:2190–2203
13. Tuncaboylu DC, Sari M, Oppermann W, Okay O (2011) Macromolecules 44:4997–5005
14. Zhang J, Wang N, Liu W, Zhao X, Lu W (2013) Soft Matter 9:6331–6337
15. Tang L, Liu W, Liu G (2010) Adv Mater 22:2652–2656
16. Haque MA, Kurokawa T, Kamita G, Gong JP (2011) Macromolecules 44:8916–8924
17. Henderson KJ, Zhou TC, Otim KJ, Shull KR (2010) Macromolecules 43:6193–6201
18. Mayumi K, Marcellan A, Ducouret G, Creton C, Narita T (2013) ACS Macro Lett 2:1065–1068
19. Guo J, Long R, Mayumi K, Hui C-Y (2016) Macromolecules 49:3497–3507
20. Mayumi K, Guo J, Narita T, Hui CY, Creton C (2016) Extreme Mech Lett 6:52–59
21. Guo J, Liu ML, Zehnder AT, Zhao J, Narita T, Creton C, Hui CY (2018) J Mech Phys Solids
120:79–95
22. Narita T, Mayumi K, Ducouret G, Hebraud P (2013) Macromolecules 46:4174–4183
23. Long R, Mayumi K, Creton C, Narita T, Hui C-Y (2014) Macromolecules 47:7243–7250
24. Long R, Mayumi K, Creton C, Narita T, Hui C-Y (2015) J Rheol (1978-present) 59:643–665
25. Zhao J, Mayumi K, Creton C, Narita T (2017) J Rheol 61:1371–1383
26. Guo J, Liu ML, Zehnder AT, Zhao J, Narita T, Creton C, Hui CY (2018) J Rheol 62:991
27. Holten-Andersen N, Harrington MJ, Birkedal H, Lee BP, Messersmith PB, Lee KYC, Waite JH
(2011) Proc Natl Acad Sci 108:2651–2655
28. Fullenkamp DE, He L, Barrett DG, Burghardt WR, Messersmith PB (2013) Macromolecules
46:1167–1174
29. Menyo MS, Hawker CJ, Waite JH (2015) ACS Macro Lett 4:1200–1204
30. Xu Z, Li J, Gao G, Wang Z, Cong Y, Chen J, Yin J, Nie L, Fu J (2018) J Polym Sci B
56:865–876
31. Lin P, Ma S, Wang X, Zhou F (2015) Adv Mater 27:2054–2059
32. Zhang H, Sun L, Yang B, Zhang Y, Zhu S (2016) RSC Adv 6:63848–63854
33. Yi X, He J, Wang X, Zhang Y, Tan G, Zhou Z, Chen J, Chen D, Wang R, Tian W, Yu P,
Zhou L, Ning C (2018) ACS Appl Mater Interfaces 10:6190–6198
Dual Crosslink Hydrogels with Metal-Ligand Coordination Bonds: Tunable Dynamics. . .
19
