Acknowledgments I am grateful to my group members and collaborators who worked on the
projects described in this review. This research was supported by the Israel Science Foundation,
the Minerva Foundation, the US-Israel Binational Science Foundation, the Gerhardt M. J. Schmidt
Minerva Center for Supramolecular Architectures, the Helen and Martin Kimmel Center for
Molecular Design, and the Yeda Sela Fund.
References
1. Aida T, Meijer EW, Stupp SI (2012) Science 335:813–8177
2. Krieg E, Rybtchinski B (2011) Chem Eur J 17:9016–9026
3. Oshovsky GV, Reinhoudt DN, Verboom W (2007) Angew Chem Int Ed 46:2366–2393
4. Capito RM, Azevedo HS, Velichko YS et al (2008) Science 319:1812–1816
5. Wang Q, Mynar JL, Yoshida M et al (2010) Nature 463:339–343
6. Ling XY, Reinhoudt DN, Huskens J (2009) Pure Appl Chem 81:2225–2233
7. Mal P, Breiner B, Rissanen K et al (2009) Science 324:1697–1699
8. Cui HG, Webber MJ, Stupp SI (2010) Biopolymers 94:1–18
9. Steed JW (2011) Chem Commun 47:1379–1383
10. Holder SJ, Sommerdijk NAJM (2011) Polym Chem 2:1018–1028
11. Spicer PT (2005) Curr Opin Colloid In 10:274–279
12. Rosen BM, Wilson CJ, Wilson DA et al (2009) Chem Rev 109:6275–6540
13. Rybtchinski B (2011) ACS Nano 5:6791–6818
14. Prins LJ, De Jong F, Timmerman P et al (2000) Nature 408:181–184
15. Prins LJ, Neuteboom EE, Paraschiv V et al (2002) J Org Chem 67:4808–4820
16. Lohr A, Wu ¨rthner F (2008) Angew Chem Int Ed 47:1232–1236
17. Korevaar PA, George SJ, Markvoort AJ et al (2012) Nature 481:492–496
18. Percec V, Wilson DA, Leowanawat P et al (2010) Science 328:1009–1014
19. Chandler D (2005) Nature 437:640–647
20. Meyer EE, Rosenberg KJ, Israelachvili J (2006) Proc Natl Acad Sci USA 103:15739–15746
21. Grimme S (2008) Angew Chem Int Ed 47:3430–3434
22. Song XD, Geiger C, Farahat M et al (1997) J Am Chem Soc 119:12481–12491
23. Whitten DG, Chen LH, Geiger HC et al (1998) J Phys Chem B 102:10098–10111
24. Kim HJ, Kim T, Lee M (2011) Acc Chem Res 44:72–82
25. Peterca M, Percec V, Leowanawat P et al (2011) J Am Chem Soc 133:20507–20520
26. Wall BD, Tovar JD (2012) Pure Appl Chem 84:1039–1045
27. Faul CFJ, Antonietti M (2003) Adv Mater 15:673–683
28. Diegelmann SR, Gorham JM, Tovar JD (2008) J Am Chem Soc 130:13840–13841
29. Shao H, Nguyen T, Romano NC et al (2009) J Am Chem Soc 131:16374
30. Guan Y, Yu SH, Antonietti M et al (2005) Chem Eur J 11:1305–1311
31. Zhang G, Jin W, Fukushima T et al (2007) J Am Chem Soc 129:719–722
32. Go ¨rl D, Zhang X, Wu ¨rthner F (2012) Angew Chem Int Ed 51:6328–6348
33. Shirman E, Ustinov A, Ben-Shitrit N et al (2008) J Phys Chem B 112:8855–8858
34. Baram J, Shirman E, Ben-Shitrit N et al (2008) J Am Chem Soc 130:14966–14967
35. Golubkov G, Weissman H, Shirman E et al (2009) Angew Chem Int Ed 48:926–930
36. Zhou Y, Shimizu T (2008) Chem Mater 20:625–633
37. Yam VW-W, Wong KM-C, Zhu N (2002) J Am Chem Soc 124:6506–6507
38. Tidhar Y, Weissman H, Wolf SG et al (2011) Chem Eur J 17:6068–6075
39. Zimmerman SC, Zeng F, Reichert DEC et al (1996) Science 271:1095–1098
40. De Greef TFA, Smulders MMJ, Wolffs M et al (2009) Chem Rev 109:5687–5754
41. Brunsveld L, Folmer BJB, Meijer EW et al (2001) Chem Rev 101:4071–4097
42. Castellano RK, Rudkevich DM, Rebek J (1997) Proc Natl Acad Sci USA 94:7132–7137
43. Rehm TH, Schmuck C (2010) Chem Soc Rev 39:3597–3611
44. Chen Z, Lohr A, Saha-Moller CR et al (2009) Chem Soc Rev 38:564–584
386
B. Rybtchinski
projects described in this review. This research was supported by the Israel Science Foundation,
the Minerva Foundation, the US-Israel Binational Science Foundation, the Gerhardt M. J. Schmidt
Minerva Center for Supramolecular Architectures, the Helen and Martin Kimmel Center for
Molecular Design, and the Yeda Sela Fund.
References
1. Aida T, Meijer EW, Stupp SI (2012) Science 335:813–8177
2. Krieg E, Rybtchinski B (2011) Chem Eur J 17:9016–9026
3. Oshovsky GV, Reinhoudt DN, Verboom W (2007) Angew Chem Int Ed 46:2366–2393
4. Capito RM, Azevedo HS, Velichko YS et al (2008) Science 319:1812–1816
5. Wang Q, Mynar JL, Yoshida M et al (2010) Nature 463:339–343
6. Ling XY, Reinhoudt DN, Huskens J (2009) Pure Appl Chem 81:2225–2233
7. Mal P, Breiner B, Rissanen K et al (2009) Science 324:1697–1699
8. Cui HG, Webber MJ, Stupp SI (2010) Biopolymers 94:1–18
9. Steed JW (2011) Chem Commun 47:1379–1383
10. Holder SJ, Sommerdijk NAJM (2011) Polym Chem 2:1018–1028
11. Spicer PT (2005) Curr Opin Colloid In 10:274–279
12. Rosen BM, Wilson CJ, Wilson DA et al (2009) Chem Rev 109:6275–6540
13. Rybtchinski B (2011) ACS Nano 5:6791–6818
14. Prins LJ, De Jong F, Timmerman P et al (2000) Nature 408:181–184
15. Prins LJ, Neuteboom EE, Paraschiv V et al (2002) J Org Chem 67:4808–4820
16. Lohr A, Wu ¨rthner F (2008) Angew Chem Int Ed 47:1232–1236
17. Korevaar PA, George SJ, Markvoort AJ et al (2012) Nature 481:492–496
18. Percec V, Wilson DA, Leowanawat P et al (2010) Science 328:1009–1014
19. Chandler D (2005) Nature 437:640–647
20. Meyer EE, Rosenberg KJ, Israelachvili J (2006) Proc Natl Acad Sci USA 103:15739–15746
21. Grimme S (2008) Angew Chem Int Ed 47:3430–3434
22. Song XD, Geiger C, Farahat M et al (1997) J Am Chem Soc 119:12481–12491
23. Whitten DG, Chen LH, Geiger HC et al (1998) J Phys Chem B 102:10098–10111
24. Kim HJ, Kim T, Lee M (2011) Acc Chem Res 44:72–82
25. Peterca M, Percec V, Leowanawat P et al (2011) J Am Chem Soc 133:20507–20520
26. Wall BD, Tovar JD (2012) Pure Appl Chem 84:1039–1045
27. Faul CFJ, Antonietti M (2003) Adv Mater 15:673–683
28. Diegelmann SR, Gorham JM, Tovar JD (2008) J Am Chem Soc 130:13840–13841
29. Shao H, Nguyen T, Romano NC et al (2009) J Am Chem Soc 131:16374
30. Guan Y, Yu SH, Antonietti M et al (2005) Chem Eur J 11:1305–1311
31. Zhang G, Jin W, Fukushima T et al (2007) J Am Chem Soc 129:719–722
32. Go ¨rl D, Zhang X, Wu ¨rthner F (2012) Angew Chem Int Ed 51:6328–6348
33. Shirman E, Ustinov A, Ben-Shitrit N et al (2008) J Phys Chem B 112:8855–8858
34. Baram J, Shirman E, Ben-Shitrit N et al (2008) J Am Chem Soc 130:14966–14967
35. Golubkov G, Weissman H, Shirman E et al (2009) Angew Chem Int Ed 48:926–930
36. Zhou Y, Shimizu T (2008) Chem Mater 20:625–633
37. Yam VW-W, Wong KM-C, Zhu N (2002) J Am Chem Soc 124:6506–6507
38. Tidhar Y, Weissman H, Wolf SG et al (2011) Chem Eur J 17:6068–6075
39. Zimmerman SC, Zeng F, Reichert DEC et al (1996) Science 271:1095–1098
40. De Greef TFA, Smulders MMJ, Wolffs M et al (2009) Chem Rev 109:5687–5754
41. Brunsveld L, Folmer BJB, Meijer EW et al (2001) Chem Rev 101:4071–4097
42. Castellano RK, Rudkevich DM, Rebek J (1997) Proc Natl Acad Sci USA 94:7132–7137
43. Rehm TH, Schmuck C (2010) Chem Soc Rev 39:3597–3611
44. Chen Z, Lohr A, Saha-Moller CR et al (2009) Chem Soc Rev 38:564–584
386
B. Rybtchinski
