22
T. Onishi
Acknowledgements This work was partially supported by the Research Council of Norway
through its Centres of Excellence scheme, project number 262695.
References
1. T. Onishi, in AIP Conference Proceedings 1702: 090001, 2015
2. T. Onishi, in AIP Conference Proceedings 1790: 020001, 2016
3. T. Onishi, in AIP Conference Proceedings 1906: 030001, 2017
4. T. Onishi, in AIP Conference Proceedings 2040: 020001, 2018
5. T. Kawai, Nanotechnology (Ohmsha, 2002), (In Japanese)
6. Y. Zhao, D.G. Truhlar, Acc. Chem. Res. 41, 157–167 (2008)
7. C.J. Cramer, D.G. Truhlar, Phys. Chem. Chem. Phys. 11, 10757–10816 (2009)
8. P.E.M. Siegbahn, M.R. Blomberg, Annu. Rev. Phys. Chem. 50, 221–249 (1999)
9. D. Rappoport, N.R.M. Crawford, F. Furche, K. Burke, Encyclopedia of Inorganic and
Bioinorganic Chemistry, Approximate Density Functionals: Which Should I Choose? (Wiley,
Hoboken, 2009)
10. A.J. Cohen, P. Mori-Sánchez, W. Yang, Science 321, 792–794 (2008)
11. A.J. Cohen, P. Mori-Sánchez, W. Yang, Chem. Rev. 112, 289–320 (2011)
12. M. Lundberg, P.E.M. Siegbahn, J. Chem. Phys. 122, 224103 (2005)
13. S. Reimann, A. Borgoo, E.I. Tellgren, A.M. Teale, T. Helgaker, J. Chem. Theory Comput. 13,
4089–4100 (2017)
14. E.I. Tellgren, A. Laestadius, T. Helgaker, S. Kvaal, A.M. Teale, J. Chem. Phys. 148, 024101
(2018)
15. A. Tachibana, New Aspects of Quantum Electrodynamics (Springer Nature, Singapore, 2017)
16. T. Onishi, T. Helgaker, Prog. Theor. Chem. Phys. 27, (2013), Chapter 14
17. T. Onishi, Quantum Computational Chemistry – Modelling and Calculation for Functional
Materials (Springer Nature, Singapore, 2018), Chapter 14
18. D. Mijatovic, J.C.T. Eijkel, A. Berg, Lab. Chip. 5, 492–500 (2005)
19. S. Iijima, Nature 354, 56–58 (1991)
20. S. Iijima, T. Ichihashi, Nature 363, 603–605 (1993)
21. H.W. Kroto, J.R. Heath, S.C. O’Brien, R.F. Curl, R.E. Smalley, Nature 318, 162–163 (1985)
22. K. Takeda, K. Awaga, Phys. Rev. B 56, 14560 (1997)
23. R. Sessoli, D. Gatteschi, A. Caneschi, M.A. Novak, Nature 365, 141–143 (1993)
24. D.Y. Wu, O. Sato, Y. Einaga, C.Y. Duan, Angew. Chem. Int. Ed. 48, 1475–1478 (2009)
25. O. Sato, J. Tao, Y.Z. Zhang, Angew. Chem. Int. Ed. 46, 2152–2187 (2007)
26. O. Sato, Nat. Chem. 2, 10–11 (2010)
27. J.A. Curran, T.W. Clyne, Surf. Coat. Technol. 199, 168–176 (2005)
28. J.A. Curran, T.W. Clyne, Surf. Coat. Technol. 199, 177–183 (2005)
29. A.L. Yerokhin, L.O. Snizhko, N.L. Gurevina, A. Leyland, A. Pilkington, A. Matthews, J. Phys.
D. Appl. Phys. 36, 2110–2120 (2003)
30. Q.S. Li, K. Domen, S. Naito, T. Onishi, K. Tamaru, Chem. Lett. 3, 321–324 (1983)
31. D. Kan, T. Terashima, R. Kanda, A. Masuno, K. Tanaka, S. Chu, H. Kan, A. Ishizumi, Y.
Kanemitsu, Y. Shimakawa, Nat. Mater. 4, 816–819 (2005)
32. T. Onishi, Quantum Computational Chemistry – Modelling and Calculation for Functional
Materials (Springer Nature, Singapore, 2018), Chapter 12
33. T. Onishi, Int. J. Quantum Chem. 108, 2856–2861 (2008)
34. T. Onishi, Prog. Theor. Chem. Phys. 27, (2013), Chapter 13
35. M.W. Schmidt, K.K. Baldridge, J.A. Boatz, S.T. Elbert, M.S. Gordon, J.H. Jensen, S. Koseki,
N. Matsunaga, K.A. Nguyen, S. Su, T.L. Windus, M. Dupuis, J.A. Montgomery, J. Comput.
Chem. 14, 1347–1363 (1993)
36. Y. Inaguma, J. Ceram. Soc. Jpn. 114, 1103–1110 (2006)
37. T. Onishi, Polyhedron 28, 1792–1795 (2009)
T. Onishi
Acknowledgements This work was partially supported by the Research Council of Norway
through its Centres of Excellence scheme, project number 262695.
References
1. T. Onishi, in AIP Conference Proceedings 1702: 090001, 2015
2. T. Onishi, in AIP Conference Proceedings 1790: 020001, 2016
3. T. Onishi, in AIP Conference Proceedings 1906: 030001, 2017
4. T. Onishi, in AIP Conference Proceedings 2040: 020001, 2018
5. T. Kawai, Nanotechnology (Ohmsha, 2002), (In Japanese)
6. Y. Zhao, D.G. Truhlar, Acc. Chem. Res. 41, 157–167 (2008)
7. C.J. Cramer, D.G. Truhlar, Phys. Chem. Chem. Phys. 11, 10757–10816 (2009)
8. P.E.M. Siegbahn, M.R. Blomberg, Annu. Rev. Phys. Chem. 50, 221–249 (1999)
9. D. Rappoport, N.R.M. Crawford, F. Furche, K. Burke, Encyclopedia of Inorganic and
Bioinorganic Chemistry, Approximate Density Functionals: Which Should I Choose? (Wiley,
Hoboken, 2009)
10. A.J. Cohen, P. Mori-Sánchez, W. Yang, Science 321, 792–794 (2008)
11. A.J. Cohen, P. Mori-Sánchez, W. Yang, Chem. Rev. 112, 289–320 (2011)
12. M. Lundberg, P.E.M. Siegbahn, J. Chem. Phys. 122, 224103 (2005)
13. S. Reimann, A. Borgoo, E.I. Tellgren, A.M. Teale, T. Helgaker, J. Chem. Theory Comput. 13,
4089–4100 (2017)
14. E.I. Tellgren, A. Laestadius, T. Helgaker, S. Kvaal, A.M. Teale, J. Chem. Phys. 148, 024101
(2018)
15. A. Tachibana, New Aspects of Quantum Electrodynamics (Springer Nature, Singapore, 2017)
16. T. Onishi, T. Helgaker, Prog. Theor. Chem. Phys. 27, (2013), Chapter 14
17. T. Onishi, Quantum Computational Chemistry – Modelling and Calculation for Functional
Materials (Springer Nature, Singapore, 2018), Chapter 14
18. D. Mijatovic, J.C.T. Eijkel, A. Berg, Lab. Chip. 5, 492–500 (2005)
19. S. Iijima, Nature 354, 56–58 (1991)
20. S. Iijima, T. Ichihashi, Nature 363, 603–605 (1993)
21. H.W. Kroto, J.R. Heath, S.C. O’Brien, R.F. Curl, R.E. Smalley, Nature 318, 162–163 (1985)
22. K. Takeda, K. Awaga, Phys. Rev. B 56, 14560 (1997)
23. R. Sessoli, D. Gatteschi, A. Caneschi, M.A. Novak, Nature 365, 141–143 (1993)
24. D.Y. Wu, O. Sato, Y. Einaga, C.Y. Duan, Angew. Chem. Int. Ed. 48, 1475–1478 (2009)
25. O. Sato, J. Tao, Y.Z. Zhang, Angew. Chem. Int. Ed. 46, 2152–2187 (2007)
26. O. Sato, Nat. Chem. 2, 10–11 (2010)
27. J.A. Curran, T.W. Clyne, Surf. Coat. Technol. 199, 168–176 (2005)
28. J.A. Curran, T.W. Clyne, Surf. Coat. Technol. 199, 177–183 (2005)
29. A.L. Yerokhin, L.O. Snizhko, N.L. Gurevina, A. Leyland, A. Pilkington, A. Matthews, J. Phys.
D. Appl. Phys. 36, 2110–2120 (2003)
30. Q.S. Li, K. Domen, S. Naito, T. Onishi, K. Tamaru, Chem. Lett. 3, 321–324 (1983)
31. D. Kan, T. Terashima, R. Kanda, A. Masuno, K. Tanaka, S. Chu, H. Kan, A. Ishizumi, Y.
Kanemitsu, Y. Shimakawa, Nat. Mater. 4, 816–819 (2005)
32. T. Onishi, Quantum Computational Chemistry – Modelling and Calculation for Functional
Materials (Springer Nature, Singapore, 2018), Chapter 12
33. T. Onishi, Int. J. Quantum Chem. 108, 2856–2861 (2008)
34. T. Onishi, Prog. Theor. Chem. Phys. 27, (2013), Chapter 13
35. M.W. Schmidt, K.K. Baldridge, J.A. Boatz, S.T. Elbert, M.S. Gordon, J.H. Jensen, S. Koseki,
N. Matsunaga, K.A. Nguyen, S. Su, T.L. Windus, M. Dupuis, J.A. Montgomery, J. Comput.
Chem. 14, 1347–1363 (1993)
36. Y. Inaguma, J. Ceram. Soc. Jpn. 114, 1103–1110 (2006)
37. T. Onishi, Polyhedron 28, 1792–1795 (2009)
