16 Circularly Polarized Luminescence …
339
structure of luminophores without using a chiral compound with opposite chirality.
Solid-state organic luminophores are expected to aid the development of novel chiral
aggregation-induced enhanced (AIEnh) CPL systems with various functionalities.
References
1. Kimoto, T., Amako, T., Tajima, N., Kuroda, R., Fujiki, M., Imai, Y.: Control of Solid-state Circularly Polarized Luminescence of Binaphthyl Organic Fluorophores through Environmental
Changes. Asian J. Org. Chem. 2, 404–410 (2013)
2. Amako, T., Harada, T., Suzuki, N., Mishima, K., Fujiki, M., Imai, Y.: Solid-state circularly
polarized luminescence and circular dichroism of viscous binaphthyl compounds. RSC Adv.
3, 23508–23513 (2013)
3. Nakabayashi, K., Amako, T., Tajima, N., Fujiki, M., Imai, Y.: Nonclassical dual control of
circularly polarized luminescence modes of binaphthyl-pyrene organic fluorophores in fluidic
and glassy media. Chem. Commun. 50, 13228–13230 (2014)
4. Kitayama, Y., Nakabayashi, K., Wakabayashi, T., Tajima, N., Fujiki, M., Imai, Y.: Circularly
polarized luminescence of biaryl atropisomers: subtle but significant structural dependency.
RSC Adv. 5, 410–415 (2015)
5. Amako, T., Nakabayashi, K., Sudo, A., Fujiki, M., Imai, Y.: Solid-state circularly polarised
luminescence of atropisomeric fluorophores embedded in achiral myo-inositol-containing
polyurethanes. Org. Biomol. Chem. 13, 2913–2917 (2015)
6. Amako, T., Nakabayashi, K., Suzuki, N., Guo, S., Abdul Rahim, N.A., Harada, T., Fujiki, M.,
Imai, Y.: Pyrene magic: chiroptical enciphering and deciphering 1,3-dioxolane bearing two
wirepullings to drive two remote pyrenes. Chem. Commun. 51, 8237–8240 (2015)
7. Zheng, H., Li, W., Li, W., Wang, X., Tang, Z., Zhang, S.X., Xu, Y.: Uncovering the Circular
Polarization Potential of Chiral Photonic Cellulose Films for Photonic Applications. Adv.
Mater. 30, 1705948 (2018)
8. Zhao, B., Pan, K., Deng, J.: Combining chiral helical polymer with achiral luminophores
for generating full-color, on-off, and switchable circularly polarized luminescence. Macromolecules 52, 376–384 (2019)
9. Jin, Q., Chen, S., Sang, Y., Guo, H., Dong, S., Han, J., Chen, W., Yang, X., Li, F., Duan,
P.: Circularly polarized luminescence of achiral open-shell π-radicals. Chem. Commun. 55,
6583–6586 (2019)
10. Chen, Y., Li, X., Li, N., Quan, Y., Cheng, Y., Tang, Y.: Strong circularly polarized electroluminescence based on chiral salen-Zn(II) complex monomer chromophores. Mater. Chem. Front.
3, 867–873 (2019)
11. Kimoto, T., Tajima, N., Fujiki, M., Imai, Y.: Control of circularly polarized luminescence by
open- and closed-type binaphthyl derivatives with the same axial chirality. Chem. Asian J 7,
2836–2841 (2012)
12. Sato, T., Tajima, N., Ueno, H., Harada, T., Fujiki, M., Imai, Y.: Binaphthyl luminophores
with triphenylsilyl groups: Sign inversion of circularly polarized luminescence and circular
dichroism. Tetrahedron 72, 7032–7038 (2016)
13. Taniguchi, N., Nakabayashi, K., Harada, T., Tajima, N., Shizuma, M., Fujiki, M., Imai, Y.:
Circularly polarized luminescence of chiral binaphthyl with achiral terthiophene fluorophores.
Chem. Lett. 44, 598–600 (2015)
14. Kono, Y., Nakabayashi, K., Kitamura, S., Kuroda, R., Fujiki, M., Imai, Y.: A comparison
of circularly polarised luminescent BINAP and BINAPO as chiral binaphthyl luminophores.
Tetrahedron 71, 3985–3989 (2015)
15. Taniguchi, A., Kaji, D., Hara, N., Murata, R., Akiyama, S., Harada, T., Sudo, A., Nishikawa,
H., Imai, Y.: Solid-state aienh-circularly polarised luminescence of chiral perylene diimide
fluorophores. RSC Adv. 9, 1976–1981 (2019)
339
structure of luminophores without using a chiral compound with opposite chirality.
Solid-state organic luminophores are expected to aid the development of novel chiral
aggregation-induced enhanced (AIEnh) CPL systems with various functionalities.
References
1. Kimoto, T., Amako, T., Tajima, N., Kuroda, R., Fujiki, M., Imai, Y.: Control of Solid-state Circularly Polarized Luminescence of Binaphthyl Organic Fluorophores through Environmental
Changes. Asian J. Org. Chem. 2, 404–410 (2013)
2. Amako, T., Harada, T., Suzuki, N., Mishima, K., Fujiki, M., Imai, Y.: Solid-state circularly
polarized luminescence and circular dichroism of viscous binaphthyl compounds. RSC Adv.
3, 23508–23513 (2013)
3. Nakabayashi, K., Amako, T., Tajima, N., Fujiki, M., Imai, Y.: Nonclassical dual control of
circularly polarized luminescence modes of binaphthyl-pyrene organic fluorophores in fluidic
and glassy media. Chem. Commun. 50, 13228–13230 (2014)
4. Kitayama, Y., Nakabayashi, K., Wakabayashi, T., Tajima, N., Fujiki, M., Imai, Y.: Circularly
polarized luminescence of biaryl atropisomers: subtle but significant structural dependency.
RSC Adv. 5, 410–415 (2015)
5. Amako, T., Nakabayashi, K., Sudo, A., Fujiki, M., Imai, Y.: Solid-state circularly polarised
luminescence of atropisomeric fluorophores embedded in achiral myo-inositol-containing
polyurethanes. Org. Biomol. Chem. 13, 2913–2917 (2015)
6. Amako, T., Nakabayashi, K., Suzuki, N., Guo, S., Abdul Rahim, N.A., Harada, T., Fujiki, M.,
Imai, Y.: Pyrene magic: chiroptical enciphering and deciphering 1,3-dioxolane bearing two
wirepullings to drive two remote pyrenes. Chem. Commun. 51, 8237–8240 (2015)
7. Zheng, H., Li, W., Li, W., Wang, X., Tang, Z., Zhang, S.X., Xu, Y.: Uncovering the Circular
Polarization Potential of Chiral Photonic Cellulose Films for Photonic Applications. Adv.
Mater. 30, 1705948 (2018)
8. Zhao, B., Pan, K., Deng, J.: Combining chiral helical polymer with achiral luminophores
for generating full-color, on-off, and switchable circularly polarized luminescence. Macromolecules 52, 376–384 (2019)
9. Jin, Q., Chen, S., Sang, Y., Guo, H., Dong, S., Han, J., Chen, W., Yang, X., Li, F., Duan,
P.: Circularly polarized luminescence of achiral open-shell π-radicals. Chem. Commun. 55,
6583–6586 (2019)
10. Chen, Y., Li, X., Li, N., Quan, Y., Cheng, Y., Tang, Y.: Strong circularly polarized electroluminescence based on chiral salen-Zn(II) complex monomer chromophores. Mater. Chem. Front.
3, 867–873 (2019)
11. Kimoto, T., Tajima, N., Fujiki, M., Imai, Y.: Control of circularly polarized luminescence by
open- and closed-type binaphthyl derivatives with the same axial chirality. Chem. Asian J 7,
2836–2841 (2012)
12. Sato, T., Tajima, N., Ueno, H., Harada, T., Fujiki, M., Imai, Y.: Binaphthyl luminophores
with triphenylsilyl groups: Sign inversion of circularly polarized luminescence and circular
dichroism. Tetrahedron 72, 7032–7038 (2016)
13. Taniguchi, N., Nakabayashi, K., Harada, T., Tajima, N., Shizuma, M., Fujiki, M., Imai, Y.:
Circularly polarized luminescence of chiral binaphthyl with achiral terthiophene fluorophores.
Chem. Lett. 44, 598–600 (2015)
14. Kono, Y., Nakabayashi, K., Kitamura, S., Kuroda, R., Fujiki, M., Imai, Y.: A comparison
of circularly polarised luminescent BINAP and BINAPO as chiral binaphthyl luminophores.
Tetrahedron 71, 3985–3989 (2015)
15. Taniguchi, A., Kaji, D., Hara, N., Murata, R., Akiyama, S., Harada, T., Sudo, A., Nishikawa,
H., Imai, Y.: Solid-state aienh-circularly polarised luminescence of chiral perylene diimide
fluorophores. RSC Adv. 9, 1976–1981 (2019)
