92
W. Ota and T. Sato
19. Shizu K, Sato T, Tanaka K, Kaji H (2010) A boron-containing molecule as an efficient
electrontransporting material with low-power consumption. Appl Phys Lett 97:142111
20. Shizu K, Sato T, Ito A, Tanaka K, Kaji H (2011) Theoretical design of a hole-transporting
molecule: hexaaza [1 6] parabiphenylophane. J Mater Chem 21:6375–6382
21. Sato T, Iwahara N, Haruta N, Tanaka K (2012) C 60 bearing ethylene moieties. Chem Phys Lett
531:257–260
22. Haruta N, Sato T, Iwahara N, Tanaka K (2013) Vibronic couplings in cycloadditions to
fullerenes. J Phys Conf Ser 428:012003
23. Haruta N, Sato T, Tanaka K (2014) Regioselectivity in multiple cycloadditions to fullerene
c60: vibronic coupling density analysis. Tetrahedron 70:3510–3513
24. Kojima Y, Ota W, Teramura K, Hosokawa S, Tanaka T, Sato T (2019) Model building of metal
oxide surfaces and vibronic coupling density as a reactivity index: regioselectivity of CO 2
adsorption on Ag-loaded Ga 2 O 3 . Chem Phys Lett 715:239–243
25. Endo A, Ogasawara M, Takahashi A, Yokoyama D, Kato Y, Adachi C (2009) Thermally
activated delayed fluorescence from Sn4+–porphyrin complexes and their application to organic
light emitting diodes-a novel mechanism for electroluminescence. Adv Mater 21:4802–4806
26. Adachi C (2014) Third-generation organic electroluminescence materials. Jpn J Appl Phys
53:060101
27. Hu JY, Pu YJ, Satoh F, Kawata S, Katagiri H, Sasabe H, Kido J (2014) Bisanthracene-based
donor–acceptor-type light-emitting dopants: Highly efficient deep-blue emission in organic
light-emitting devices. Adv Funct Mater 24:2064–2071
28. Hong Y, Lam JWY, Tang BZ (2009) Aggregation-induced emission: phenomenon, mechanism
and applications. Chem Commun 29:4332–4353
29. Hong Y, Lam JWY, Tang BZ (2011) Aggregation-induced emission. Chem Soc Rev 40:5361–
5388
30. Nishio S, Higashiguchi K, Matsuda K (2014) The effect of cyano substitution on the
fluorescence behavior of 1,2-bis(pyridylphenyl)ethene. Asian J Org Chem 3:686–690
31. Frisch MJ, Trucks GW, Schlegel HB, Scuseria GE, Robb MA, Cheeseman JR, Scalmani G,
Barone V, Petersson GA, Nakatsuji H, Li X, Caricato M, Marenich AV, Bloino J, Janesko BG,
Gomperts R, Mennucci B, Hratchian HP, Ortiz JV, Izmaylov AF, Sonnenberg JL, WilliamsYoung D, Ding F, Lipparini F, Egidi F, Goings J, Peng B, Petrone A, Henderson T, Ranasinghe
D, Zakrzewski VG, Gao J, Rega N, Zheng G, Liang W, Hada M, Ehara M, Toyota K, Fukuda
R, Hasegawa J, Ishida M, Nakajima T, Honda Y, Kitao O, Nakai H, Vreven T, Throssell K,
Montgomery Jr JA, Peralta JE, Ogliaro F, Bearpark MJ, Heyd JJ, Brothers EN, Kudin KN,
Staroverov VN, Keith T, Kobayashi R, Normand J, Raghavachari K, Rendell A, Burant JC,
Iyengar SS, Tomasi J, Cossi M, Millam JM, Klene M, Adamo C, Cammi R, Ochterski JW,
Martin RL, Morokuma K, Farkas O, Foresman JB, Fox DJ (2016) Gaussian 16, Revision B.
01. Gaussian Inc., Wallingford, CT
32. Shizu K, Sato T, Tanaka K (2013) Inverse relationship of reorganization energy to the number
of π electrons from perspective of vibronic coupling density. J Comput Chem Jpn 12:215–221
33. Ota W, Takahashi K, Higashiguchi K, Matsuda K, Sato T (2020) Origin of aggregationinduced enhanced emission: role of pseudo-degenerate electronic states of excimers formed in
aggregation phases. J Mater Chem C. https://doi.org/10.1039/C9TC07067B
W. Ota and T. Sato
19. Shizu K, Sato T, Tanaka K, Kaji H (2010) A boron-containing molecule as an efficient
electrontransporting material with low-power consumption. Appl Phys Lett 97:142111
20. Shizu K, Sato T, Ito A, Tanaka K, Kaji H (2011) Theoretical design of a hole-transporting
molecule: hexaaza [1 6] parabiphenylophane. J Mater Chem 21:6375–6382
21. Sato T, Iwahara N, Haruta N, Tanaka K (2012) C 60 bearing ethylene moieties. Chem Phys Lett
531:257–260
22. Haruta N, Sato T, Iwahara N, Tanaka K (2013) Vibronic couplings in cycloadditions to
fullerenes. J Phys Conf Ser 428:012003
23. Haruta N, Sato T, Tanaka K (2014) Regioselectivity in multiple cycloadditions to fullerene
c60: vibronic coupling density analysis. Tetrahedron 70:3510–3513
24. Kojima Y, Ota W, Teramura K, Hosokawa S, Tanaka T, Sato T (2019) Model building of metal
oxide surfaces and vibronic coupling density as a reactivity index: regioselectivity of CO 2
adsorption on Ag-loaded Ga 2 O 3 . Chem Phys Lett 715:239–243
25. Endo A, Ogasawara M, Takahashi A, Yokoyama D, Kato Y, Adachi C (2009) Thermally
activated delayed fluorescence from Sn4+–porphyrin complexes and their application to organic
light emitting diodes-a novel mechanism for electroluminescence. Adv Mater 21:4802–4806
26. Adachi C (2014) Third-generation organic electroluminescence materials. Jpn J Appl Phys
53:060101
27. Hu JY, Pu YJ, Satoh F, Kawata S, Katagiri H, Sasabe H, Kido J (2014) Bisanthracene-based
donor–acceptor-type light-emitting dopants: Highly efficient deep-blue emission in organic
light-emitting devices. Adv Funct Mater 24:2064–2071
28. Hong Y, Lam JWY, Tang BZ (2009) Aggregation-induced emission: phenomenon, mechanism
and applications. Chem Commun 29:4332–4353
29. Hong Y, Lam JWY, Tang BZ (2011) Aggregation-induced emission. Chem Soc Rev 40:5361–
5388
30. Nishio S, Higashiguchi K, Matsuda K (2014) The effect of cyano substitution on the
fluorescence behavior of 1,2-bis(pyridylphenyl)ethene. Asian J Org Chem 3:686–690
31. Frisch MJ, Trucks GW, Schlegel HB, Scuseria GE, Robb MA, Cheeseman JR, Scalmani G,
Barone V, Petersson GA, Nakatsuji H, Li X, Caricato M, Marenich AV, Bloino J, Janesko BG,
Gomperts R, Mennucci B, Hratchian HP, Ortiz JV, Izmaylov AF, Sonnenberg JL, WilliamsYoung D, Ding F, Lipparini F, Egidi F, Goings J, Peng B, Petrone A, Henderson T, Ranasinghe
D, Zakrzewski VG, Gao J, Rega N, Zheng G, Liang W, Hada M, Ehara M, Toyota K, Fukuda
R, Hasegawa J, Ishida M, Nakajima T, Honda Y, Kitao O, Nakai H, Vreven T, Throssell K,
Montgomery Jr JA, Peralta JE, Ogliaro F, Bearpark MJ, Heyd JJ, Brothers EN, Kudin KN,
Staroverov VN, Keith T, Kobayashi R, Normand J, Raghavachari K, Rendell A, Burant JC,
Iyengar SS, Tomasi J, Cossi M, Millam JM, Klene M, Adamo C, Cammi R, Ochterski JW,
Martin RL, Morokuma K, Farkas O, Foresman JB, Fox DJ (2016) Gaussian 16, Revision B.
01. Gaussian Inc., Wallingford, CT
32. Shizu K, Sato T, Tanaka K (2013) Inverse relationship of reorganization energy to the number
of π electrons from perspective of vibronic coupling density. J Comput Chem Jpn 12:215–221
33. Ota W, Takahashi K, Higashiguchi K, Matsuda K, Sato T (2020) Origin of aggregationinduced enhanced emission: role of pseudo-degenerate electronic states of excimers formed in
aggregation phases. J Mater Chem C. https://doi.org/10.1039/C9TC07067B
