4. Farshchi R, Ramsteiner M, Herfort J, Tahraoui A, Grahn HT (2011) Optical communication of
spin information between light emitting diodes. Appl Phys Lett 98:162508. (3pp)
5. Wagenknecht C, Li C-M, Reingruber A, Bao X-H, Goebel A, Chen Y-A, Zhang Q, Chen K,
Pan J-W (2010) Experimental demonstration of a heralded entanglement source. Nat Photonics
4:549–552
6. Sherson JF, Krauter H, Olsson RK, Julsgaard B, Hammerer K, Cirac I, Polzik ES (2006)
Quantum teleportation between light and matter. Nature 443:557–560
7. Yu CJ, Lin CE, Yu LP, Chou C (2009) Paired circularly polarized heterodyne ellipsometer.
Appl Opt 48:758–764
8. Schadt M (1997) Liquid crystal materials and liquid crystal displays. Annu Rev Mater Sci
27:305–379
9. Castiglioni E, Abbate S, Lebon F, Longhi G (2014) Chiroptical spectroscopic techniques based
on fluorescence. Methods Appl Fluoresc 2:024006. (7pp)
10. Muller G (2014) In: de Bettencourt-Dias A (ed) Luminescence of lanthanide ions in coordination compounds and nanomaterials. Wiley, Chichester, pp 77–124
11. Riehl JP, Muller G (2012) In: Berova N, Polavarapu PL, Nakanishi K, Woody RW (eds)
Comprehensive chiroptical spectroscopy vol. 1. Instrumentation, methodologies, and theoretical simulations. Wiley, Hoboken, pp 65–90
12. Meinert C, Hoffmann SV, Cassam-Chenaï P, Evans AC, Giri C, Nahon L, Meierhenrich UJ
(2014) Photonenergy-controlled symmetry breaking with circularly polarized light. Angew
Chem Int Ed 53:210–214
13. Cave RJ (2009) Inducing chirality with circularly polarized light. Science 323:1435–1436
14. Pagni RM, Compton RN (2005) Is circularly polarized light an effective reagent for asymmetric
synthesis? Mini-Rev Org Chem 2:203–209
15. Bisoyi HK, Li Q (2016) Light-directed dynamic chirality inversion in functional self-organized
helical superstructures. Angew Chem Int Ed 55:2994–3010
16. Yeom J, Yeom B, Chan H, Smith KW, Dominguez-Medina S, Bahng JH, Zhao G, Chang W-S,
Chang S-J, Chuvilin A, Melnikau D, Rogach AL, Zhang P, Link S, Král P, Kotov NA (2015)
Chiral templating of self-assembling nanostructures by circularly polarized light. Nat Mater
14:66–72
17. Wu D, Chen L, Lee W, Ko G, Yin J, Yoon J (2018) Recent progress in the development of
organic dye based near-infrared fluorescence probes for metal ions. Coord Chem Rev
354:74–97
18. Kolemen S, Akkaya EU (2018) Reaction-based BODIPY probes for selective bio-imaging.
Coord Chem Rev 354:121–134
19. Turskoy A, Yildiz D, Akkaya EU (2019) Photosensitization and controlled photosensitization
with BODIPY dyes. Coord Chem Rev 379:47–64
20. Antina EV, Bumagina NA, V’yugin AI, Solomonov AM (2017) Fluorescent indicators of metal
ions based on dipyrromethene platform. Dyes Pigments 136:368–381
21. Marfin YS, Solomonov AV, Timin AS, Rumyantsev EV (2017) Recent advances of individual
bodipy and bodipy-based functional materials in medical diagnostics and treatment. Curr Med
Chem 24:2745–2772
22. Kowada T, Maeda H, Kikuchi K (2015) BODIPY-based probes for the fluorescence imaging of
biomolecules in living cells. Chem Soc Rev 44:4953–4972
23. Bessette A, Hanan G (2014) Design, synthesis and photophysical studies of dipyrromethenebased materials: insights into their applications in organic photovoltaic devices. Chem Soc Rev
43:3342–3405
24. López Arbeloa F, Bañuelos J, Martínez V, Arbeloa T, López Arbeloa I (2005) Structural,
photophysical and lasing properties of pyrromethene dyes. Int Rev Phys Chem 24:339–374
25. Clarke RG, Hall MJ (2019) In: Scriven E, Ramsden C (eds) Advances in heterocyclic chemistry, vol 128. Academic Press, San Diego, pp 181–261
26. Bañuelos J (2016) BODIPY dye, the most versatile fluorophore ever? Chem Rec 16:335–348
27. Lakshmi V, Sharma R, Ravikanth M (2016) Functionalized boron-dipyrromethenes and their
applications. Curr Org Chem 6:1–24
146
M. J. Hall and S. de la Moya
spin information between light emitting diodes. Appl Phys Lett 98:162508. (3pp)
5. Wagenknecht C, Li C-M, Reingruber A, Bao X-H, Goebel A, Chen Y-A, Zhang Q, Chen K,
Pan J-W (2010) Experimental demonstration of a heralded entanglement source. Nat Photonics
4:549–552
6. Sherson JF, Krauter H, Olsson RK, Julsgaard B, Hammerer K, Cirac I, Polzik ES (2006)
Quantum teleportation between light and matter. Nature 443:557–560
7. Yu CJ, Lin CE, Yu LP, Chou C (2009) Paired circularly polarized heterodyne ellipsometer.
Appl Opt 48:758–764
8. Schadt M (1997) Liquid crystal materials and liquid crystal displays. Annu Rev Mater Sci
27:305–379
9. Castiglioni E, Abbate S, Lebon F, Longhi G (2014) Chiroptical spectroscopic techniques based
on fluorescence. Methods Appl Fluoresc 2:024006. (7pp)
10. Muller G (2014) In: de Bettencourt-Dias A (ed) Luminescence of lanthanide ions in coordination compounds and nanomaterials. Wiley, Chichester, pp 77–124
11. Riehl JP, Muller G (2012) In: Berova N, Polavarapu PL, Nakanishi K, Woody RW (eds)
Comprehensive chiroptical spectroscopy vol. 1. Instrumentation, methodologies, and theoretical simulations. Wiley, Hoboken, pp 65–90
12. Meinert C, Hoffmann SV, Cassam-Chenaï P, Evans AC, Giri C, Nahon L, Meierhenrich UJ
(2014) Photonenergy-controlled symmetry breaking with circularly polarized light. Angew
Chem Int Ed 53:210–214
13. Cave RJ (2009) Inducing chirality with circularly polarized light. Science 323:1435–1436
14. Pagni RM, Compton RN (2005) Is circularly polarized light an effective reagent for asymmetric
synthesis? Mini-Rev Org Chem 2:203–209
15. Bisoyi HK, Li Q (2016) Light-directed dynamic chirality inversion in functional self-organized
helical superstructures. Angew Chem Int Ed 55:2994–3010
16. Yeom J, Yeom B, Chan H, Smith KW, Dominguez-Medina S, Bahng JH, Zhao G, Chang W-S,
Chang S-J, Chuvilin A, Melnikau D, Rogach AL, Zhang P, Link S, Král P, Kotov NA (2015)
Chiral templating of self-assembling nanostructures by circularly polarized light. Nat Mater
14:66–72
17. Wu D, Chen L, Lee W, Ko G, Yin J, Yoon J (2018) Recent progress in the development of
organic dye based near-infrared fluorescence probes for metal ions. Coord Chem Rev
354:74–97
18. Kolemen S, Akkaya EU (2018) Reaction-based BODIPY probes for selective bio-imaging.
Coord Chem Rev 354:121–134
19. Turskoy A, Yildiz D, Akkaya EU (2019) Photosensitization and controlled photosensitization
with BODIPY dyes. Coord Chem Rev 379:47–64
20. Antina EV, Bumagina NA, V’yugin AI, Solomonov AM (2017) Fluorescent indicators of metal
ions based on dipyrromethene platform. Dyes Pigments 136:368–381
21. Marfin YS, Solomonov AV, Timin AS, Rumyantsev EV (2017) Recent advances of individual
bodipy and bodipy-based functional materials in medical diagnostics and treatment. Curr Med
Chem 24:2745–2772
22. Kowada T, Maeda H, Kikuchi K (2015) BODIPY-based probes for the fluorescence imaging of
biomolecules in living cells. Chem Soc Rev 44:4953–4972
23. Bessette A, Hanan G (2014) Design, synthesis and photophysical studies of dipyrromethenebased materials: insights into their applications in organic photovoltaic devices. Chem Soc Rev
43:3342–3405
24. López Arbeloa F, Bañuelos J, Martínez V, Arbeloa T, López Arbeloa I (2005) Structural,
photophysical and lasing properties of pyrromethene dyes. Int Rev Phys Chem 24:339–374
25. Clarke RG, Hall MJ (2019) In: Scriven E, Ramsden C (eds) Advances in heterocyclic chemistry, vol 128. Academic Press, San Diego, pp 181–261
26. Bañuelos J (2016) BODIPY dye, the most versatile fluorophore ever? Chem Rec 16:335–348
27. Lakshmi V, Sharma R, Ravikanth M (2016) Functionalized boron-dipyrromethenes and their
applications. Curr Org Chem 6:1–24
146
M. J. Hall and S. de la Moya