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Han, J., Guo, S., Lu, H., Liu, S., Zhao, Q., & Huang, W. (2018). Recent progress on circularly polarized luminescent materials for organic optoelectronic devices. Advanced Optical Materials,
6(17), 1–32. https://doi.org/10.1002/adom.201800538.
Hayasaka, H., Miyashita, T., Tamura, K., & Akagi, K. (2010). Helically π-stacked conjugated polymers bearing photoresponsive and chiral moieties in side chains: Reversible photoisomerizationenforced switching between emission and quenching of circularly polarized fluorescence.
Advanced Functional Materials, 20(8), 1243–1250. https://doi.org/10.1002/adfm.200902059.
Inoue, Y. (1992). Asymmetric photochemical reactions in solution. Chemical Reviews, 92(5), 741–
770. https://doi.org/10.1021/cr00013a001.
Inoue, Y., & Ramamurthy, V. (2004). Chiral photochemistry. Retrieved from https://www.crcpress.
com/Chiral-Photochemistry/Inoue-Ramamurthy/p/book/9780824757106
Jiang, X., Liu, X., Jiang, Y., Quan, Y., Cheng, Y., & Zhu, C. (2014). Fluorescence study of chiral
β-ketoiminate-based newly synthesized boron hybrid polymers. Macromolecular Chemistry
and Physics, 215(4), 358–364. https://doi.org/10.1002/macp.201300569.
Kawagoe, Y., Fujiki, M., & Nakano, Y. (2010). Limonene magic: Noncovalent molecular chirality
transfer leading to ambidextrous circularly polarised luminescent π-conjugated polymers. New
Journal of Chemistry, 34(4), 637–647. https://doi.org/10.1039/b9nj00733d.
Kawasaki, T., Sato, M., Ishiguro, S., Saito, T., Morishita, Y., Sato, I., Nishino, H., Inoue, Y., &
Soai, K. (2005). Enantioselective synthesis of near enantiopure compound by asymmetric autocatalysis triggered by asymmetric photolysis with circularly polarized light. Journal of the
American Chemical Society, 127(10), 3274–3275. https://doi.org/10.1021/ja0422108.
Kim, B. C., Lim, Y. J., Song, J. H., Lee, J. H., Jeong, K.-U., Lee, J. H., Lee, G.-D., & Lee, S. H.
(2014). Wideband antireflective circular polarizer exhibiting a perfect dark state in organic lightemitting- diode display. Optics Express, 22(S7), A1725. https://doi.org/10.1364/oe.22.0a1725.
Li, F., Wang, Y., Wang, Z., Cheng, Y., & Zhu, C. (2015). Red colored CPL emission of chiral
1,2-DACH-based polymers via chiral transfer of the conjugated chain backbone structure.
Polymer Chemistry, 6(38), 6802–6805. https://doi.org/10.1039/c5py01148e.
Liu, Z.-T., Huang, Y.-Y., Li, Y., He, Y.-M., & Fan, Q.-H. (2011). Synthesis and chiroptical properties of chiral binaphthyl-containing polyfluorene derivatives. Journal of Polymer Science Part
A: Polymer Chemistry, 49(3), 680–689. https://doi.org/10.1002/pola.24479.
Longhi, G., Castiglioni, E., Koshoubu, J., Mazzeo, G., & Abbate, S. (2016). Circularly polarized
luminescence: A review of experimental and theoretical aspects. Chirality, 28(10), 696–707.
https://doi.org/10.1002/chir.22647.
Ma, X., Azeem, E. A., Liu, X., Cheng, Y., & Zhu, C. (2014). Synthesis and tunable chiroptical properties of chiral BODIPY-based D–π–A conjugated polymers. Journal of Materials
Chemistry C, 2(6), 1076–1084. https://doi.org/10.1039/c3tc32029d.
Meinert, C., Hoffmann, S. V., Cassam-Chenaï, P., Evans, A. C., Giri, C., Nahon, L., &
Meierhenrich, U. J. (2014). Photonenergy-controlled symmetry breaking with circularly polarized light. Angewandte Chemie International Edition, 53(1), 210–214. https://doi.org/10.1002/
anie.201307855.
Morita, M., Rau, D., & Herren, M. (2004). Circularly polarized luminescence and enantiomeric
energy transfer discrimination of chiral Tb(III)–Nd(III) EDDS and related complexes. Journal
of Alloys and Compounds, 380(1–2), 260–267. https://doi.org/10.1016/j.jallcom.2004.03.091.
Nakano, T. (2014). Tricks of light on helices: Transformation of helical polymers by photoirradiation. The Chemical Record, 14(3), 369–385. https://doi.org/10.1002/tcr.201300042.
Nakano, Y., & Fujiki, M. (2011). Circularly polarized light enhancement by helical polysilane
aggregates suspension in organic optofluids. Macromolecules, 44(19), 7511–7519. https://doi.
org/10.1021/ma201665n.
Nakano, Y., Ichiyanagi, F., Naito, M., Yang, Y., & Fujiki, M. (2012). Chiroptical generation and
inversion during the mirror-symmetry-breaking aggregation of dialkylpolysilanes due to limonene chirality. Chemical Communications, 48(53), 6636. https://doi.org/10.1039/c2cc17845a.
Oda, M., Nothofer, H. G., Lieser, G., Scherf, U., Meskers, S. C. J., & Neher, D. (2000). Circularly
polarized electroluminescence from liquid-crystalline chiral polyfluorenes. Advanced Materials,
12(5), 362–365. https://doi.org/10.1002/(sici)1521-4095(200003)12:5<362::aid-adma362>
3.0.co;2-p.
P. Puneet et al.
Han, J., Guo, S., Lu, H., Liu, S., Zhao, Q., & Huang, W. (2018). Recent progress on circularly polarized luminescent materials for organic optoelectronic devices. Advanced Optical Materials,
6(17), 1–32. https://doi.org/10.1002/adom.201800538.
Hayasaka, H., Miyashita, T., Tamura, K., & Akagi, K. (2010). Helically π-stacked conjugated polymers bearing photoresponsive and chiral moieties in side chains: Reversible photoisomerizationenforced switching between emission and quenching of circularly polarized fluorescence.
Advanced Functional Materials, 20(8), 1243–1250. https://doi.org/10.1002/adfm.200902059.
Inoue, Y. (1992). Asymmetric photochemical reactions in solution. Chemical Reviews, 92(5), 741–
770. https://doi.org/10.1021/cr00013a001.
Inoue, Y., & Ramamurthy, V. (2004). Chiral photochemistry. Retrieved from https://www.crcpress.
com/Chiral-Photochemistry/Inoue-Ramamurthy/p/book/9780824757106
Jiang, X., Liu, X., Jiang, Y., Quan, Y., Cheng, Y., & Zhu, C. (2014). Fluorescence study of chiral
β-ketoiminate-based newly synthesized boron hybrid polymers. Macromolecular Chemistry
and Physics, 215(4), 358–364. https://doi.org/10.1002/macp.201300569.
Kawagoe, Y., Fujiki, M., & Nakano, Y. (2010). Limonene magic: Noncovalent molecular chirality
transfer leading to ambidextrous circularly polarised luminescent π-conjugated polymers. New
Journal of Chemistry, 34(4), 637–647. https://doi.org/10.1039/b9nj00733d.
Kawasaki, T., Sato, M., Ishiguro, S., Saito, T., Morishita, Y., Sato, I., Nishino, H., Inoue, Y., &
Soai, K. (2005). Enantioselective synthesis of near enantiopure compound by asymmetric autocatalysis triggered by asymmetric photolysis with circularly polarized light. Journal of the
American Chemical Society, 127(10), 3274–3275. https://doi.org/10.1021/ja0422108.
Kim, B. C., Lim, Y. J., Song, J. H., Lee, J. H., Jeong, K.-U., Lee, J. H., Lee, G.-D., & Lee, S. H.
(2014). Wideband antireflective circular polarizer exhibiting a perfect dark state in organic lightemitting- diode display. Optics Express, 22(S7), A1725. https://doi.org/10.1364/oe.22.0a1725.
Li, F., Wang, Y., Wang, Z., Cheng, Y., & Zhu, C. (2015). Red colored CPL emission of chiral
1,2-DACH-based polymers via chiral transfer of the conjugated chain backbone structure.
Polymer Chemistry, 6(38), 6802–6805. https://doi.org/10.1039/c5py01148e.
Liu, Z.-T., Huang, Y.-Y., Li, Y., He, Y.-M., & Fan, Q.-H. (2011). Synthesis and chiroptical properties of chiral binaphthyl-containing polyfluorene derivatives. Journal of Polymer Science Part
A: Polymer Chemistry, 49(3), 680–689. https://doi.org/10.1002/pola.24479.
Longhi, G., Castiglioni, E., Koshoubu, J., Mazzeo, G., & Abbate, S. (2016). Circularly polarized
luminescence: A review of experimental and theoretical aspects. Chirality, 28(10), 696–707.
https://doi.org/10.1002/chir.22647.
Ma, X., Azeem, E. A., Liu, X., Cheng, Y., & Zhu, C. (2014). Synthesis and tunable chiroptical properties of chiral BODIPY-based D–π–A conjugated polymers. Journal of Materials
Chemistry C, 2(6), 1076–1084. https://doi.org/10.1039/c3tc32029d.
Meinert, C., Hoffmann, S. V., Cassam-Chenaï, P., Evans, A. C., Giri, C., Nahon, L., &
Meierhenrich, U. J. (2014). Photonenergy-controlled symmetry breaking with circularly polarized light. Angewandte Chemie International Edition, 53(1), 210–214. https://doi.org/10.1002/
anie.201307855.
Morita, M., Rau, D., & Herren, M. (2004). Circularly polarized luminescence and enantiomeric
energy transfer discrimination of chiral Tb(III)–Nd(III) EDDS and related complexes. Journal
of Alloys and Compounds, 380(1–2), 260–267. https://doi.org/10.1016/j.jallcom.2004.03.091.
Nakano, T. (2014). Tricks of light on helices: Transformation of helical polymers by photoirradiation. The Chemical Record, 14(3), 369–385. https://doi.org/10.1002/tcr.201300042.
Nakano, Y., & Fujiki, M. (2011). Circularly polarized light enhancement by helical polysilane
aggregates suspension in organic optofluids. Macromolecules, 44(19), 7511–7519. https://doi.
org/10.1021/ma201665n.
Nakano, Y., Ichiyanagi, F., Naito, M., Yang, Y., & Fujiki, M. (2012). Chiroptical generation and
inversion during the mirror-symmetry-breaking aggregation of dialkylpolysilanes due to limonene chirality. Chemical Communications, 48(53), 6636. https://doi.org/10.1039/c2cc17845a.
Oda, M., Nothofer, H. G., Lieser, G., Scherf, U., Meskers, S. C. J., & Neher, D. (2000). Circularly
polarized electroluminescence from liquid-crystalline chiral polyfluorenes. Advanced Materials,
12(5), 362–365. https://doi.org/10.1002/(sici)1521-4095(200003)12:5<362::aid-adma362>
3.0.co;2-p.
P. Puneet et al.
