Theor Chem Acc (2015) 134:147
1 3
4. Smela E (2003) Adv Mater 15:481–494
5. Terao F, Morimoto M, Irle M (2012) Angew Chem Int Ed
51:901–904
6. Ebron VH, Yang Z, Seyer DJ, Kozlov ME, Oh J, Xie H, Razal
J, Hall LJ, Ferraris JP, MacDiarmid AG, Baughman RH (2006)
Science 311:1580–1583
7. Yu HH, Swager TM (2004) IEEE J Ocean Eng 29:692–695
8. Marsella MJ, Reid RJ (1999) Macromolecules 32:5982–5984
9. Barboiu M, Vaughan G, Kyritsakas N, Lehn JM (2003) Chem
Eur J 9:763–769
10. Juluri BK, Kumar AS, Liu Y, Ye T, Yang YW, Flood AH, Fang L,
Stoddart JF, Weiss PS, Huang TJ (2009) ACS Nano 3:291–300
11. Huang TJ, Brough B, Ho C-M, Liu Y, Flood AH, Bonvallet PA,
Tseng H-R, Stoddart JF, Baller M, Magonov S (2004) Appl Phys
Lett 85:5391
12. Madden JD, Cush RA, Kanigan TS, Brenan CJ, Hunter IW
(1999) Synth Met 105:61–64
13. Madden JD, Cush RA, Kanigan TS, Hunter IW (2000) Synth
Met 113:185–192
14. Qi B, Lu W, Mattes BR (2004) J Phys Chem B 108:6222–6227
15. Tahhan M, Truong V-T, Spinks GM, Wallace GG (2003) Smart
Mater Struct 12:626–632
16. Han G, Shi G (2004) Sens Actuators B Chem 99:525–531
17. Baughman RH (1999) Science 284(80):1340–1344
18. Bissell RA, Córdova E, Kaifer AE, Stoddart JF (1994) Nature
369:133–137
19. Credi A, Balzani V, Langford SJ, Stoddart JF (1997) J Am Chem
Soc 119:2679–2681
20. Tseng HR, Vignon SA, Stoddart JF (2003) Angew Chem Int Ed
42:1491–1495
21. Badjic JD, Balzani V, Credi A, Silvi S, Stoddart JF (2004) Science 303:1845–1849
22. Tian YH, Kertesz M (2009) Chem Mater 21:2149–2157
23. Song C, Swager TM (2008) Org Lett 10:3575–3578
24. Chebny VJ, Shukla R, Lindeman SV, Rathore R (2009) Org Lett
11:1939–1942
25. Scherlis DA, Marzari N (2005) J Am Chem Soc 127:3207–3212
26. Goto K, Kubo T, Yamamoto K, Nakasuji K, Sato K, Shiomi D,
Takui T, Kubota M, Kobayashi T, Yakusi K, Ouyang JY (1999) J
Am Chem Soc 121:1619–1620
27. Zheng SJ, Lan J, Khan SI, Rubin Y (2003) J Am Chem Soc
125:5786–5791
28. Small D, Rosokha SV, Kochi JK, Head-Gordon M (2005) J Phys
Chem A 109:11261–11267
29. Zaitsev V, Rosokha SV, Head-Gordon M, Kochi JK (2006) J Org
Chem 71:520–526
30. Haddon RC (2012) ChemPhysChem 13:3581–3583
31. Suzuki S, Morita Y, Fukui K, Sato K, Shiomi D, Takui T,
Nakasuji K (2006) J Am Chem Soc 128:2530–2531
32. Tian YH, Kertesz M (2010) J Am Chem Soc
132(31):10648–10649
33. Cui ZH, Lischka H, Beneberu HZ, Kertesz M (2014) J Am Chem
Soc 136:5539–5542
34. Bondi A (1964) J Phys Chem 68:441–451
35. Mou Z, Uchida K, Kubo T, Kertesz M (2014) J Am Chem Soc
136:18009–18022
36. Rempala P, King BT (2006) J Chem Theory Comput
2:1112–1118
37. Mathew SM, Hartley CS (2011) Macromolecules 44:8425–8432
38. Mathew SM, Engle JT, Ziegler CJ, Hartley CS (2013) J Am
Chem Soc 135:6714–6722
39. Ohta E, Sato H, Ando S, Kosaka A, Fukushima T, Hashizume D,
Yamasaki M, Hasegawa K, Muraoka A, Ushiyama H, Yamashita
K, Aida T (2011) Nat Chem 3:68–73
40. Kimura Y, Fukawa N, Miyauchi Y, Noguchi K, Tanaka K (2014)
Angew Chem Int Ed 53:8480–8483
41. Han S, Bond AD, Disch RL, Holmes D, Schulman JM, Teat
SJ, Vollhardt KPC, Whitener GD (2002) Angew Chem Int Ed
114:3357–3361
42. Sun G, Kürti J, Kertesz M, Baughman RH (2002) J Am Chem
Soc 124:15076–15080
43. Zhao Y, Schultz EN, Truhlar DG (2006) J Chem Theory Comput
2:364–382
44. Beneberu HZ, Tian TH, Kertesz M (2012) Phys Chem Chem
Phys 14:10713–10725
45. Frisch MJ et al (2013) Gaussian 09, Revision D.01. Gaussian
Inc., Wallingford
46. Zhurko GA, Zhurko DA Chemcraft, Version 1.8 (2015). http://
Chemcraftprog.com
47. Helix, in Wolfram Mathworld. http://mathworld.wolfram.com/
Helix.html . Accessed on 13 May 2015
48. Longuet-Higgins HC, Salem L (1959) Proc R Soc A Math Phys
Eng Sci 251:172–185
49. Kertesz M, Choi CH, Yang SJ (2005) Chem Rev 105:3448–3481
50. Nakagawa H, Yoshino J, Yamada K, Shiro M (2003) Chem Lett
32:90–91
56
Reprinted from the journal
1 3
4. Smela E (2003) Adv Mater 15:481–494
5. Terao F, Morimoto M, Irle M (2012) Angew Chem Int Ed
51:901–904
6. Ebron VH, Yang Z, Seyer DJ, Kozlov ME, Oh J, Xie H, Razal
J, Hall LJ, Ferraris JP, MacDiarmid AG, Baughman RH (2006)
Science 311:1580–1583
7. Yu HH, Swager TM (2004) IEEE J Ocean Eng 29:692–695
8. Marsella MJ, Reid RJ (1999) Macromolecules 32:5982–5984
9. Barboiu M, Vaughan G, Kyritsakas N, Lehn JM (2003) Chem
Eur J 9:763–769
10. Juluri BK, Kumar AS, Liu Y, Ye T, Yang YW, Flood AH, Fang L,
Stoddart JF, Weiss PS, Huang TJ (2009) ACS Nano 3:291–300
11. Huang TJ, Brough B, Ho C-M, Liu Y, Flood AH, Bonvallet PA,
Tseng H-R, Stoddart JF, Baller M, Magonov S (2004) Appl Phys
Lett 85:5391
12. Madden JD, Cush RA, Kanigan TS, Brenan CJ, Hunter IW
(1999) Synth Met 105:61–64
13. Madden JD, Cush RA, Kanigan TS, Hunter IW (2000) Synth
Met 113:185–192
14. Qi B, Lu W, Mattes BR (2004) J Phys Chem B 108:6222–6227
15. Tahhan M, Truong V-T, Spinks GM, Wallace GG (2003) Smart
Mater Struct 12:626–632
16. Han G, Shi G (2004) Sens Actuators B Chem 99:525–531
17. Baughman RH (1999) Science 284(80):1340–1344
18. Bissell RA, Córdova E, Kaifer AE, Stoddart JF (1994) Nature
369:133–137
19. Credi A, Balzani V, Langford SJ, Stoddart JF (1997) J Am Chem
Soc 119:2679–2681
20. Tseng HR, Vignon SA, Stoddart JF (2003) Angew Chem Int Ed
42:1491–1495
21. Badjic JD, Balzani V, Credi A, Silvi S, Stoddart JF (2004) Science 303:1845–1849
22. Tian YH, Kertesz M (2009) Chem Mater 21:2149–2157
23. Song C, Swager TM (2008) Org Lett 10:3575–3578
24. Chebny VJ, Shukla R, Lindeman SV, Rathore R (2009) Org Lett
11:1939–1942
25. Scherlis DA, Marzari N (2005) J Am Chem Soc 127:3207–3212
26. Goto K, Kubo T, Yamamoto K, Nakasuji K, Sato K, Shiomi D,
Takui T, Kubota M, Kobayashi T, Yakusi K, Ouyang JY (1999) J
Am Chem Soc 121:1619–1620
27. Zheng SJ, Lan J, Khan SI, Rubin Y (2003) J Am Chem Soc
125:5786–5791
28. Small D, Rosokha SV, Kochi JK, Head-Gordon M (2005) J Phys
Chem A 109:11261–11267
29. Zaitsev V, Rosokha SV, Head-Gordon M, Kochi JK (2006) J Org
Chem 71:520–526
30. Haddon RC (2012) ChemPhysChem 13:3581–3583
31. Suzuki S, Morita Y, Fukui K, Sato K, Shiomi D, Takui T,
Nakasuji K (2006) J Am Chem Soc 128:2530–2531
32. Tian YH, Kertesz M (2010) J Am Chem Soc
132(31):10648–10649
33. Cui ZH, Lischka H, Beneberu HZ, Kertesz M (2014) J Am Chem
Soc 136:5539–5542
34. Bondi A (1964) J Phys Chem 68:441–451
35. Mou Z, Uchida K, Kubo T, Kertesz M (2014) J Am Chem Soc
136:18009–18022
36. Rempala P, King BT (2006) J Chem Theory Comput
2:1112–1118
37. Mathew SM, Hartley CS (2011) Macromolecules 44:8425–8432
38. Mathew SM, Engle JT, Ziegler CJ, Hartley CS (2013) J Am
Chem Soc 135:6714–6722
39. Ohta E, Sato H, Ando S, Kosaka A, Fukushima T, Hashizume D,
Yamasaki M, Hasegawa K, Muraoka A, Ushiyama H, Yamashita
K, Aida T (2011) Nat Chem 3:68–73
40. Kimura Y, Fukawa N, Miyauchi Y, Noguchi K, Tanaka K (2014)
Angew Chem Int Ed 53:8480–8483
41. Han S, Bond AD, Disch RL, Holmes D, Schulman JM, Teat
SJ, Vollhardt KPC, Whitener GD (2002) Angew Chem Int Ed
114:3357–3361
42. Sun G, Kürti J, Kertesz M, Baughman RH (2002) J Am Chem
Soc 124:15076–15080
43. Zhao Y, Schultz EN, Truhlar DG (2006) J Chem Theory Comput
2:364–382
44. Beneberu HZ, Tian TH, Kertesz M (2012) Phys Chem Chem
Phys 14:10713–10725
45. Frisch MJ et al (2013) Gaussian 09, Revision D.01. Gaussian
Inc., Wallingford
46. Zhurko GA, Zhurko DA Chemcraft, Version 1.8 (2015). http://
Chemcraftprog.com
47. Helix, in Wolfram Mathworld. http://mathworld.wolfram.com/
Helix.html . Accessed on 13 May 2015
48. Longuet-Higgins HC, Salem L (1959) Proc R Soc A Math Phys
Eng Sci 251:172–185
49. Kertesz M, Choi CH, Yang SJ (2005) Chem Rev 105:3448–3481
50. Nakagawa H, Yoshino J, Yamada K, Shiro M (2003) Chem Lett
32:90–91
56
Reprinted from the journal
