10 Circularly Polarized Luminescence (CPL) Based on Planar …
373
Morisaki Y, Sawada R, Gon M, Chujo Y (2016) New type of planar chiral [2.2]paracyclophanes
and construction of one-handed double helices. Chem Asian J 11:2524–2527
Morisaki Y, Shibata S, Chujo Y (2017) [2.2]paracyclophane-based single molecular wire consisting
of four π-electron systems can. J Chem 95:424–431
Muller G (2014) In luminescence of lanthanide ions in coordination compounds and nanomaterials.
In: de Bettencourt-Dias A (ed). John Wiley & Sons, Chichester, U.K., pp 77–124
Müller S, Liepold B, Roth GJ, Bestmann HJ (1996) An improved one-pot procedure for the synthesis
of alkynes from aldehydes. Synlett 1996:521522
Ohira S (1989) Methanolysis of dimethyl (1-diazo-2-oxopropyl) phosphonate: generation of
dimethyl (diazomethyl) phosphonate and reaction with carbonyl compounds. Synth Commun
19:561–564
Oldham WJ, Miao YJ, Lachicotte RJ, Bazan GC (1998) Stilbenoid dimers: effect of conjugation
length and relative chromophore orientation. J Am Chem Soc 120:419–420
Pamperin D, Hopf H, Syldatk C, Pietzsch M (1997) Synthesis of Planar Chiral [2.2]Paracyclophanes
by Biotransformations: Kinetic Resolution of 4-Formyl[2.2]paracyclophane by Asymmetric
Reduction. Tetrahedron Asym 8:319–325
Pamperin D, Ohse B, Hopf H, Pietzsch M (1998) Synthesis of planar-chiral [2.2]paracyclophanes
by biotransformations: screening for hydrolase activity for the kinetic resolution of 4-acetoxy[2.2]paracyclophane. J Mol Cat B Enzymatic 5:317–319
Paradies J (2011) [2.2]Paracyclophane derivatives: synthesis and application in catalysis. Synthesis
3749–3766
Parmar R, Coles MP, Hitchcock PB, Rowlands GJ (2010) Towards a flexible strategy for
the synthesis of enantiomerically pure [2.2]paracyclophane derivatives: the chemistry of
4-tolylsulfinyl[2.2]paracyclophane. Synthesis 4177–4187
Pye PJ, Rossen K, Reamer RA, Tsou NN, Volante RP, Reider PJ (1997) A new planar chiral
bisphosphine ligand for asymmetric catalysis: highly enantioselective hydrogenations under mild
conditions. J Am Chem Soc 119:6207–6208
Riehl JP, Muller F (2012) Comprehensive chiroptical spectroscopy. Wiley and Sons, New York
Riehl JP, Richardson FS (1986) Circularly polarized luminescence spectroscopy. Chem Rev 86:1–16
Rossen K, Pye PJ, Maliakal A, Volante RP (1997) Kinetic resolution of rac-4,12dibromo[2.2]paracyclophane in a palladium [2.2]phanephos catalyzed amination. J Org Chem
62:6462–6463
Rowlands GJ (2008) The synthesis of enantiomerically pure [2.2]paracyclophane derivatives. Org
Biomol Chem 6:1527–1534
Rozenberg V, Sergeeva E, Hopf H (2004) In Gleiter R, Hopf H (eds) Modern cyclophane chemistry.
Wiley-VCH, Weinheim, Germany, pp 435–462
Salhi F, Collard DM (2003) π-stacked conjugated polymers: the influence of paracyclophane πstacks on the redox and optical properties of a new class of broken conjugated polythiophenes.
Adv Mater 15:81–85
Salhi F, Lee B, Metz C, Bottomley LA, Collard DM (2002) Influenece of π-stacking. on the redox
properties of oligothiophenes: (α-alkyloligo-thienyl)para[2.2]cyclophane. Org Lett 4:3195–3198
Sánchez-Carnerero EM, Agarrabeitia AR, Moreno F, Maroto BL, Muller G, Ortiz MJ, de la Moya S
(2015) Circularly polarized luminescence from simple organic molecules. Chem Eur J 21:13488–
13500
Sasai Y, Tsuchida H, Kakuta T, Ogoshi T, Morisaki Y (2018) Synthesis of optically active πstacked compounds based on planar chiral tetrasubstituted [2.2]paracyclophane. Mater Chem
Front 2:791–795
Sato S, Yoshii a, Takahashi S, Furumi S, Takauchi M, Isobe H (2017) Chiral intertwined spirals and
magnetic transition dipole moments dictated by cylinder helicity. PNAS 114:13097–13101
Sawada Y, Furumi S, Takai A, Takeuchi M, Noguchi K, Tanaka K (2012) Rhodium-catalyzed
Enantioselective synthesis, crystal structures, and photophysical properties of helically chiral
1,1’-bitriphenylenes. J Am Chem Soc 134:4080–4083
373
Morisaki Y, Sawada R, Gon M, Chujo Y (2016) New type of planar chiral [2.2]paracyclophanes
and construction of one-handed double helices. Chem Asian J 11:2524–2527
Morisaki Y, Shibata S, Chujo Y (2017) [2.2]paracyclophane-based single molecular wire consisting
of four π-electron systems can. J Chem 95:424–431
Muller G (2014) In luminescence of lanthanide ions in coordination compounds and nanomaterials.
In: de Bettencourt-Dias A (ed). John Wiley & Sons, Chichester, U.K., pp 77–124
Müller S, Liepold B, Roth GJ, Bestmann HJ (1996) An improved one-pot procedure for the synthesis
of alkynes from aldehydes. Synlett 1996:521522
Ohira S (1989) Methanolysis of dimethyl (1-diazo-2-oxopropyl) phosphonate: generation of
dimethyl (diazomethyl) phosphonate and reaction with carbonyl compounds. Synth Commun
19:561–564
Oldham WJ, Miao YJ, Lachicotte RJ, Bazan GC (1998) Stilbenoid dimers: effect of conjugation
length and relative chromophore orientation. J Am Chem Soc 120:419–420
Pamperin D, Hopf H, Syldatk C, Pietzsch M (1997) Synthesis of Planar Chiral [2.2]Paracyclophanes
by Biotransformations: Kinetic Resolution of 4-Formyl[2.2]paracyclophane by Asymmetric
Reduction. Tetrahedron Asym 8:319–325
Pamperin D, Ohse B, Hopf H, Pietzsch M (1998) Synthesis of planar-chiral [2.2]paracyclophanes
by biotransformations: screening for hydrolase activity for the kinetic resolution of 4-acetoxy[2.2]paracyclophane. J Mol Cat B Enzymatic 5:317–319
Paradies J (2011) [2.2]Paracyclophane derivatives: synthesis and application in catalysis. Synthesis
3749–3766
Parmar R, Coles MP, Hitchcock PB, Rowlands GJ (2010) Towards a flexible strategy for
the synthesis of enantiomerically pure [2.2]paracyclophane derivatives: the chemistry of
4-tolylsulfinyl[2.2]paracyclophane. Synthesis 4177–4187
Pye PJ, Rossen K, Reamer RA, Tsou NN, Volante RP, Reider PJ (1997) A new planar chiral
bisphosphine ligand for asymmetric catalysis: highly enantioselective hydrogenations under mild
conditions. J Am Chem Soc 119:6207–6208
Riehl JP, Muller F (2012) Comprehensive chiroptical spectroscopy. Wiley and Sons, New York
Riehl JP, Richardson FS (1986) Circularly polarized luminescence spectroscopy. Chem Rev 86:1–16
Rossen K, Pye PJ, Maliakal A, Volante RP (1997) Kinetic resolution of rac-4,12dibromo[2.2]paracyclophane in a palladium [2.2]phanephos catalyzed amination. J Org Chem
62:6462–6463
Rowlands GJ (2008) The synthesis of enantiomerically pure [2.2]paracyclophane derivatives. Org
Biomol Chem 6:1527–1534
Rozenberg V, Sergeeva E, Hopf H (2004) In Gleiter R, Hopf H (eds) Modern cyclophane chemistry.
Wiley-VCH, Weinheim, Germany, pp 435–462
Salhi F, Collard DM (2003) π-stacked conjugated polymers: the influence of paracyclophane πstacks on the redox and optical properties of a new class of broken conjugated polythiophenes.
Adv Mater 15:81–85
Salhi F, Lee B, Metz C, Bottomley LA, Collard DM (2002) Influenece of π-stacking. on the redox
properties of oligothiophenes: (α-alkyloligo-thienyl)para[2.2]cyclophane. Org Lett 4:3195–3198
Sánchez-Carnerero EM, Agarrabeitia AR, Moreno F, Maroto BL, Muller G, Ortiz MJ, de la Moya S
(2015) Circularly polarized luminescence from simple organic molecules. Chem Eur J 21:13488–
13500
Sasai Y, Tsuchida H, Kakuta T, Ogoshi T, Morisaki Y (2018) Synthesis of optically active πstacked compounds based on planar chiral tetrasubstituted [2.2]paracyclophane. Mater Chem
Front 2:791–795
Sato S, Yoshii a, Takahashi S, Furumi S, Takauchi M, Isobe H (2017) Chiral intertwined spirals and
magnetic transition dipole moments dictated by cylinder helicity. PNAS 114:13097–13101
Sawada Y, Furumi S, Takai A, Takeuchi M, Noguchi K, Tanaka K (2012) Rhodium-catalyzed
Enantioselective synthesis, crystal structures, and photophysical properties of helically chiral
1,1’-bitriphenylenes. J Am Chem Soc 134:4080–4083
